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Wikipedia

Pottery

Pottery is the process and the products of forming vessels and other objects with clay and other raw materials, which are fired at high temperatures to give them a hard and durable form. The place where such wares are made by a potter is also called a pottery (plural potteries). The definition of pottery, used by the ASTM International, is "all fired ceramic wares that contain clay when formed, except technical, structural, and refractory products".[1] End applications include tableware, decorative ware, sanitary ware, and in technology and industry such as electrical insulators and laboratory ware. In art history and archaeology, especially of ancient and prehistoric periods, pottery often means vessels only, and sculpted figurines of the same material are called terracottas.

Hand building a jar.
Finished pottery products kept for drying in the sun.
An 18th-century Chinese export porcelain service, for the America market

Pottery is one of the oldest human inventions, originating before the Neolithic period, with ceramic objects such as the Gravettian culture Venus of Dolní Věstonice figurine discovered in the Czech Republic dating back to 29,000–25,000 BC.[2] However, the earliest known pottery vessels were discovered in Jiangxi, China, which date back to 18,000 BC. Other early Neolithic and pre-Neolithic pottery artifacts have been found, in Jōmon Japan (10,500 BC),[3] the Russian Far East (14,000 BC),[4] Sub-Saharan Africa (9,400 BC),[5] South America (9,000s–7,000s BC),[6] and the Middle East (7,000s–6,000s BC).

The pottery market in Boubon, Niger.

Pottery is made by forming a clay body into objects of a desired shape and heating them to high temperatures (600–1600 °C) in a bonfire, pit or kiln, which induces reactions that lead to permanent changes including increasing the strength and rigidity of the object. Much pottery is purely utilitarian, but some can also be regarded as ceramic art. An article can be decorated before or after firing.

Pottery is traditionally divided into three types: earthenware, stoneware and porcelain. All three may be glazed and unglazed. All may also be decorated by various techniques. In many examples the group a piece belongs to is immediately visually apparent, but this is not always the case; for example fritware uses no or little clay, so falls outside these groups. Historic pottery of all these types is often grouped as either "fine" wares, relatively expensive and well-made, and following the aesthetic taste of the culture concerned, or alternatively "coarse", "popular", "folk" or "village" wares, mostly undecorated, or simply so, and often less well-made.

Cooking in pottery became less popular once metal pots became available,[7] but is still used for dishes that benefit from the qualities of pottery cooking, typically slow cooking in an oven, such as biryani, cassoulet, daube, tagine, jollof rice, kedjenou, cazuela and types of baked beans.[7]

Main types edit

Earthenware edit

 
Earthenware jar from the Neolithic Majiayao culture China, 3300 to 2000 BCE

The earliest forms of pottery were made from clays that were fired at low temperatures, initially in pit-fires or in open bonfires. They were hand formed and undecorated. Earthenware can be fired as low as 600 °C, and is normally fired below 1200 °C.[8]

Because unglazed earthenware is porous, it has limited utility for the storage of liquids or as tableware. However, earthenware has had a continuous history from the Neolithic period to today. It can be made from a wide variety of clays, some of which fire to a buff, brown or black colour, with iron in the constituent minerals resulting in a reddish-brown. Reddish coloured varieties are called terracotta, especially when unglazed or used for sculpture. The development of ceramic glaze made impermeable pottery possible, improving the popularity and practicality of pottery vessels. Decoration has evolved and developed through history.

Stoneware edit

 
15th-century Japanese stoneware storage jar, with partial ash glaze

Stoneware is pottery that has been fired in a kiln at a relatively high temperature, from about 1,100 °C to 1,200 °C, and is stronger and non-porous to liquids.[9] The Chinese, who developed stoneware very early on, classify this together with porcelain as high-fired wares. In contrast, stoneware could only be produced in Europe from the late Middle Ages, as European kilns were less efficient, and the right type of clay less common. It remained a speciality of Germany until the Renaissance.[10]

Stoneware is very tough and practical, and much of it has always been utilitarian, for the kitchen or storage rather than the table. But "fine" stoneware has been important in China, Japan and the West, and continues to be made. Many utilitarian types have also come to be appreciated as art.

Porcelain edit

 
Contemporary porcelain plate by Sèvres

Porcelain is made by heating materials, generally including kaolin, in a kiln to temperatures between 1,200 and 1,400 °C (2,200 and 2,600 °F). This is higher than used for the other types, and achieving these temperatures was a long struggle, as well as realizing what materials were needed. The toughness, strength and translucence of porcelain, relative to other types of pottery, arises mainly from vitrification and the formation of the mineral mullite within the body at these high temperatures.

Although porcelain was first made in China, the Chinese traditionally do not recognise it as a distinct category, grouping it with stoneware as "high-fired" ware, opposed to "low-fired" earthenware. This confuses the issue of when it was first made. A degree of translucency and whiteness was achieved by the Tang dynasty (AD 618–906), and considerable quantities were being exported. The modern level of whiteness was not reached until much later, in the 14th century. Porcelain was also made in Korea and in Japan from the end of the 16th century, after suitable kaolin was located in those countries. It was not made effectively outside East Asia until the 18th century.[11]

Archaeology edit

 
Archaeologist cleaning an early mediaeval pottery sherd from Chodlik, Poland.

The study of pottery can help to provide an insight into past cultures. Fabric analysis (see section below), used to analyse the fabric of pottery, is important part of archaeology for understanding the archaeological culture of the excavated site by studying the fabric of artifacts, such as their usage, source material composition, decorative pattern, color of patterns, etc. This helps to understand characteristics, sophistication, habits, technology, tools, trade, etc. of the people who made and used the pottery. Carbon dating reveals the age. Sites with similar pottery characteristics have the same culture, those sites which have distinct cultural characteristics but with some overlap are indicative of cultural exchange such as trade or living in vicinity or continuity of habitation, etc. Examples are black and red ware, redware, Sothi-Siswal culture and Painted Grey Ware culture. The six fabrics of Kalibangan is a good example of use of fabric analysis in identifying a differentiated culture which was earlier thought to be typical Indus Valley civilisation (IVC) culture.

Pottery is durable, and fragments, at least, often survive long after artifacts made from less-durable materials have decayed past recognition. Combined with other evidence, the study of pottery artefacts is helpful in the development of theories on the organisation, economic condition and the cultural development of the societies that produced or acquired pottery. The study of pottery may also allow inferences to be drawn about a culture's daily life, religion, social relationships, attitudes towards neighbours, attitudes to their own world and even the way the culture understood the universe.

 
Terracotta Army following excavation

It is valuable to look into pottery as an archaeological record of potential interaction between peoples. When pottery is placed within the context of linguistic and migratory patterns, it becomes an even more prevalent category of social artifact.[12] As proposed by Olivier P. Gosselain, it is possible to understand ranges of cross-cultural interaction by looking closely at the chaîne opératoire of ceramic production.[13]

The methods used to produce pottery in early Sub-Saharan Africa are divisible into three categories: techniques visible to the eye (decoration, firing and post-firing techniques), techniques related to the materials (selection or processing of clay, etc.), and techniques of molding or fashioning the clay.[13] These three categories can be used to consider the implications of the reoccurrence of a particular sort of pottery in different areas. Generally, the techniques that are easily visible (the first category of those mentioned above) are thus readily imitated, and may indicate a more distant connection between groups, such as trade in the same market or even relatively close settlements.[13] Techniques that require more studied replication (i.e., the selection of clay and the fashioning of clay) may indicate a closer connection between peoples, as these methods are usually only transmissible between potters and those otherwise directly involved in production.[13] Such a relationship requires the ability of the involved parties to communicate effectively, implying pre-existing norms of contact or a shared language between the two. Thus, the patterns of technical diffusion in pot-making that are visible via archaeological findings also reveal patterns in societal interaction.

Chronologies based on pottery are often essential for dating non-literate cultures and are often of help in the dating of historic cultures as well. Trace-element analysis, mostly by neutron activation, allows the sources of clay to be accurately identified and the thermoluminescence test can be used to provide an estimate of the date of last firing. Examining sherds from prehistory, scientists learned that during high-temperature firing, iron materials in clay record the state of the Earth's magnetic field at that moment.

Fabric analysis edit

The "clay body" is also called the "paste" or the "fabric", which consists of 2 things, the "clay matrix" – composed of grains of less than 0.02 mm grains which can be seen using the high-powered microscopes or a Scanning Electron Microscope (SEM), and the "clay inclusions" – which are larger grains of clay and could be seen with the naked eye or a low-power binocular microscope. For geologists, fabric analysis means spatial arrangement of minerals in a rock. For Archaeologists, the "fabric analysis" of pottery entails the study of clay matrix and inclusions in the clay body as well as the firing temperature and conditions. Analysis is done to examine the following 3 in detail:[14]

  • How pottery was made e.g. material, design such as shape and style, etc.
  • Its decorations, such as patterns, colors of patterns, slipped (glazing) or unslipped decoration
  • Evidence of type of use.

The Six fabrics of Kalibangan is a good example of fabric analysis.

Clay bodies and raw materials edit

 
Preparation of clay for pottery in India

 
Removing a filter cake of porcelain body from a filter press

Body, or clay body, is the material used to form pottery. Thus a potter might prepare, or order from a supplier, such an amount of earthenware body, stoneware body or porcelain body. The compositions of clay bodies varies considerably, and include both prepared and 'as dug'; the former being by far the dominant type for studio and industry. The properties also vary considerably, and include plasticity and mechanical strength before firing; the firing temperature needed to mature them; properties after firing, such as permeability, mechanical strength and colour.

There can be regional variations in the properties of raw materials used for pottery, and these can lead to wares that are unique in character to a locality.

The main ingredient of the body is clay. Some different types used for pottery include:[15]

  • Kaolin, is sometimes referred to as china clay because it was first used in China.
  • Ball clay: An extremely plastic, fine grained sedimentary clay, which may contain some organic matter.
  • Fire clay: A clay having a slightly lower percentage of fluxes than kaolin, but usually quite plastic. It is highly heat resistant form of clay which can be combined with other clays to increase the firing temperature and may be used as an ingredient to make stoneware type bodies.
  • Stoneware clay: Suitable for creating stoneware. Has many of the characteristics between fire clay and ball clay, having finer grain, like ball clay but is more heat resistant like fire clays.
  • Common red clay and shale clay have vegetable and ferric oxide impurities which make them useful for bricks, but are generally unsatisfactory for pottery except under special conditions of a particular deposit.[16]
  • Bentonite: An extremely plastic clay which can be added in small quantities to short clay to increase the plasticity.

It is common for clays and other raw materials to be mixed to produce clay bodies suited to specific purposes. Various mineral processing techniques are often utilised before mixing the raw materials, with comminution being effectively universal for non-clay materials.

Examples of non-clay materials include:

 
A section cut-through of ball mill, which are widely used to mill raw materials for pottery
  • Nepheline syenite, an alternative to feldspar.
  • Calcined alumina, can enhance the fired properties of a body.
  • Chamotte, also called grog, is fired clay which it is crushed, and sometimes then milled. Helps attenuate drying shrinkage.[17]
  • Bone ash, produced by the calcination of animal bone. A key raw material for bone china.
  • Frit, produced made by quenching and breaking up a glass of a specific composition. Can be used at low additions in some bodies, but common uses include as components of a glaze or enamel, or for the body of fritware, when it usually mixed with larger quantities of quartz sand.
  • Various others at low levels of addition such as dolomite, limestone, talc and wollastonite.

Production edit

The production of pottery includes the following stages:

 
Clay body being extruded from a de-airing pug
  • Preparing the clay body.
  • Shaping
  • Drying
  • Firing
  • Glazing and decorating. (this can be undertaken prior to firing. Also, additional firing stages after decoration may be needed.)

Shaping edit

Before being shaped, clay must be prepared. This may include kneading to ensure an even moisture content throughout the body. Air trapped within the clay body needs to be removed, or de-aired, and can be accomplished either by a machine called a vacuum pug or manually by wedging. Wedging can also help produce an even moisture content. Once a clay body has been kneaded and de-aired or wedged, it is shaped by a variety of techniques, which include:

  • Hand-building: This is the earliest forming method. Wares can be constructed by hand from coils of clay, combining flat slabs of clay, or pinching solid balls of clay or some combination of these. Parts of hand-built vessels are often joined with the aid of slip. Some studio potters find hand-building more conducive for one-of-a-kind works of art.
    A potter using a potter's wheel describes his materials (in Romanian and English)
  • The potter's wheel: In a process called "throwing" (coming from the Old English word thrawan which means to twist or turn,[18]) a ball of clay is placed in the centre of a turntable, called the wheel-head, which the potter rotates with a stick, with foot power or with a variable-speed electric motor. During the process of throwing, the wheel rotates while the solid ball of soft clay is pressed, squeezed and pulled gently upwards and outwards into a hollow shape. Skill and experience are required to throw pots of an acceptable standard and, while the ware may have high artistic merit, the reproducibility of the method is poor.[19] Because of its inherent limitations, throwing can only be used to create wares with radial symmetry on a vertical axis.
  • Press moulding: a simple technique of shaping by manually pressing a lump of clay body into a porous mould.
  • Granulate pressing: a highly automated technique of shaping by pressing clay body in a semi-dry and granulated form in a mould. The body is pressed into the mould by a porous die through which water is pumped at high pressure. The fine, free flowing granulated body is prepared by spray drying a high-solids content slip. Granulate pressing, also known as dust pressing, is widely used in the manufacture of ceramic tiles and, increasingly, of plates.
     
    Jiggering a plate
  • Jiggering and jolleying: These operations are carried out on the potter's wheel and allow the time taken to bring wares to a standardized form to be reduced. Jiggering is the operation of bringing a shaped tool into contact with the plastic clay of a piece under construction, the piece itself being set on a rotating plaster mould on the wheel. The jigger tool shapes one face while the mould shapes the other. Jiggering is used only in the production of flat wares, such as plates, but a similar operation, jolleying, is used in the production of hollow-wares such as cups. Jiggering and jolleying have been used in the production of pottery since at least the 18th century. In large-scale factory production, jiggering and jolleying are usually automated, which allows the operations to be carried out by semi-skilled labour.
  • Roller-head machine: This machine is for shaping wares on a rotating mould, as in jiggering and jolleying, but with a rotary shaping tool replacing the fixed profile. The rotary shaping tool is a shallow cone having the same diameter as the ware being formed and shaped to the desired form of the back of the article being made. Wares may in this way be shaped, using relatively unskilled labour, in one operation at a rate of about twelve pieces per minute, though this varies with the size of the articles being produced. Developed in the UK just after World War II by the company Service Engineers, roller-heads were quickly adopted by manufacturers around the world; it remains the dominant method for producing both flatware and holloware, such as plates and mugs.[20]
  • Pressure casting: Is a development of traditional slipcasting. Specially developed polymeric materials allow a mould to be subject to application external pressures of up to 4.0 MPa – so much higher than slip casting in plaster moulds where the capillary forces correspond to a pressure of around 0.1–0.2 MPa. The high pressure leads to much faster casting rates and, hence, faster production cycles. Furthermore, the application of high pressure air through the polymeric moulds upon demoulding the cast means a new casting cycle can be started immediately in the same mould, unlike plaster moulds which require lengthy drying times. The polymeric materials have much greater durability than plaster and, therefore, it is possible to achieve shaped products with better dimensional tolerances and much longer mould life. Pressure casting was developed in the 1970s for the production of sanitaryware although, more recently, it has been applied to tableware.[21][22][23][24]
  • RAM pressing: This is used to shape ware by pressing a bat of prepared clay body into a required shape between two porous moulding plates. After pressing, compressed air is blown through the porous mould plates to release the shaped wares.
 
Filling a plaster mould with slip
 
De-moulding a large vase after it has been slip cast
  • Slip casting: This is suited to the making of shapes that cannot be formed by other methods. A liquid slip, made by mixing clay body with water, is poured into a highly absorbent plaster mould. Water from the slip is absorbed into the mould leaving a layer of clay body covering its internal surfaces and taking its internal shape. Excess slip is poured out of the mould, which is then split open and the moulded object removed. Slip casting is widely used in the production of sanitaryware and is also used for making other complex shaped ware such as teapots and figurines.
  • Injection moulding: This is a shape-forming process adapted for the tableware industry from the method long established for the forming of thermoplastic and some metal components.[25] It has been called Porcelain Injection Moulding, or PIM.[26] Suited to the mass production of complex-shaped articles, one significant advantage of the technique is that it allows the production of a cup, including the handle, in a single process, and thereby eliminates the handle-fixing operation and produces a stronger bond between cup and handle.[27] The feed to the mould die is a mix of approximately 50 to 60 per cent unfired body in powder form, together with 40 to 50 per cent organic additives composed of binders, lubricants and plasticisers.[26] The technique is not as widely used as other shaping methods.[28]
  • 3D printing: There are two methods. One involves the layered deposition of soft clay body similar to fused deposition modelling (FDM), and the other uses powder binding techniques where clay body in dry powder form is fused together layer upon layer with a liquid.
  • Injection moulding of ceramic tableware has been developed, though it has yet to be fully commercialised.[29]

Drying edit

Prior to firing, the water in an article needs to be removed. A number of different stages, or conditions of the article, can be identified:

  • Greenware refers to unfired objects. At sufficient moisture content, bodies at this stage are in their most plastic form (as they are soft and malleable, and hence can be easily deformed by handling).
  • Leather-hard refers to a clay body that has been dried partially. At this stage the clay object has approximately 15% moisture content. Clay bodies at this stage are very firm and only slightly pliable. Trimming and handle attachment often occurs at the leather-hard state.
  • Bone-dry refers to clay bodies when they reach a moisture content at or near 0%. At that moisture content, the item is ready to be fired. Additionally, the piece is extremely fragile at this stage and must be handled with care.

Firing edit

 
A modern tunnel kiln

Firing produces permanent and irreversible chemical and physical changes in the body. The pre-fired clay is kaolinite, which is transformed into Metakaolin. It is only after firing that the article or material is pottery. In lower-fired pottery, the changes include sintering, the fusing together of coarser particles in the body at their points of contact with each other. In the case of porcelain, where higher firing-temperatures are used, the physical, chemical and mineralogical properties of the constituents in the body are greatly altered. In all cases, the reason for firing is to permanently harden the wares, and the firing regime must be appropriate to the materials used.

Temperature edit

As a rough guide, modern earthenwares are normally fired at temperatures in the range of about 1,000 °C (1,830 °F) to 1,200 °C (2,190 °F); stonewares at between about 1,100 °C (2,010 °F) to 1,300 °C (2,370 °F); and porcelains at between about 1,200 °C (2,190 °F) to 1,400 °C (2,550 °F). Historically, reaching high temperatures was a long-lasting challenge, and earthenware can be fired effectively as low as 600 °C (1,112 °F), achievable in primitive pit firing.

Atmosphere edit

 
A bottle kiln

The atmosphere within a kiln during firing can affect the appearance of the body and glaze. Key to this is the differing colours of the various oxides of iron, such as iron(III) oxide (also known as ferric oxide or Fe2O3) which is associated with brown-red colours, whilst iron(II) oxide (also known as ferrous oxide or FeO) is associated with much darker colours, including black. The oxygen concentration in the kiln influences the type, and relative proportions, of these iron oxides in fired the body and glaze: for example, where there is a lack of oxygen during firing the associated carbon monoxide (CO) will readily react with oxygen in Fe2O3 in the raw materials and cause it to be reduced to FeO.[30][31]

An oxygen deficient condition, called a reducing atmosphere, is generated by preventing the complete combustion of the kiln fuel; this is achieved by deliberately restricting the supply of air or by supplying an excess of fuel.[30][31]

Methods edit

Firing pottery can be done using a variety of methods, with a kiln being the usual firing method. Both the maximum temperature and the duration of firing influences the final characteristics of the ceramic. Thus, the maximum temperature within a kiln is often held constant for a period of time to soak the wares to produce the maturity required in the body of the wares.

Kilns may be heated by burning combustible materials, such as wood, coal and gas, or by electricity. The use of microwave energy has been investigated.[32]

When used as fuels, coal and wood can introduce smoke, soot and ash into the kiln which can affect the appearance of unprotected wares. For this reason, wares fired in wood- or coal-fired kilns are often placed in the kiln in saggars, ceramic boxes, to protect them. Modern kilns fuelled by gas or electricity are cleaner and more easily controlled than older wood- or coal-fired kilns and often allow shorter firing times to be used.

Niche techniques include:

 
Pottery firing mound in Kalabougou, Mali. Much of the earliest pottery would have been fired in a similar fashion.
  • In a Western adaptation of traditional Japanese Raku ware firing, wares are removed from the kiln while hot and smothered in ashes, paper or woodchips which produces a distinctive carbonised appearance. This technique is also used in Malaysia in creating traditional labu sayung.[33][34]
  • In Mali, a firing mound is used rather than a brick or stone kiln. Unfired pots are first brought to the place where a mound will be built, customarily by the women and girls of the village. The mound's foundation is made by placing sticks on the ground, then:

[...] pots are positioned on and amid the branches and then grass is piled high to complete the mound. Although the mound contains the pots of many women, who are related through their husbands' extended families, each women is responsible for her own or her immediate family's pots within the mound. When a mound is completed and the ground around has been swept clean of residual combustible material, a senior potter lights the fire. A handful of grass is lit and the woman runs around the circumference of the mound touching the burning torch to the dried grass. Some mounds are still being constructed as others are already burning.[35]

Stages edit

  • Biscuit (or bisque)[36][37] refers to the clay after the object is shaped to the desired form and fired in the kiln for the first time, known as "bisque fired" or "biscuit fired". This firing results in both chemical and physical changes to the minerals of the clay body.
  • Glaze fired is the final stage of some pottery making, or glost fired.[19] A glaze may be applied to the biscuit ware and the object can be decorated in several ways. After this the object is "glazed fired", which causes the glaze material to melt, then adhere to the object. Depending on the temperature schedule the glaze firing may also further mature the body as chemical and physical changes continue.

Decorating edit

Pottery may be decorated in many different ways. Some decoration can be done before or after the firing, and may be undertaken before or after glazing.

Methods edit

 
Hand painting a vase.
  • Painting has been used since early prehistoric times, and can be very elaborate. The painting is often applied to pottery that has been fired once, and may then be overlaid with a glaze afterwards. Many pigments change colour when fired, and the painter must allow for this.
  • Glaze: Perhaps the most common form of decoration, that also serves as protection to the pottery, by being tougher and keeping liquid from penetrating the pottery. Glaze may be colourless, especially over painting, or coloured and opaque.
  • Crystalline glaze: acharacterised by crystalline clusters of various shapes and colours embedded in a more uniform and opaque glaze. Produced by the slow cooling of the glost fire.
  • Carving: Pottery vessels may be decorated by shallow carving of the clay body, typically with a knife or similar instrument used on the wheel. This is common in Chinese porcelain of the classic periods.
  • Burnishing: The surface of pottery wares may be burnished prior to firing by rubbing with a suitable instrument of wood, steel or stone to produce a polished finish that survives firing. It is possible to produce very highly polished wares when fine clays are used or when the polishing is carried out on wares that have been partially dried and contain little water, though wares in this condition are extremely fragile and the risk of breakage is high.
  • Terra Sigillata is an ancient form of decorating ceramics that was first developed in Ancient Greece.
  • Lithography, also called litho, although the alternative names of transfer print or "decal" are also common. These are used to apply designs to articles. The litho comprises three layers: the colour, or image, layer which comprises the decorative design; the cover coat, a clear protective layer, which may incorporate a low-melting glass; and the backing paper on which the design is printed by screen printing or lithography. There are various methods of transferring the design while removing the backing-paper, some of which are suited to machine application.
  • Banding is the application by hand or by machine of a band of colour to the edge of a plate or cup. Also known as "lining", this operation is often carried out on a potter's wheel.
  • Agateware: named after its resemblance to the mineral agate, is produced by partially blending clays of differing colours. In Japan the term "neriage" is used, whilst in China, where such things have been made since at least the Tang Dynasty, they are called "marbled" wares.
  • Engobe: a clay slip is used to coat the surface of pottery, usually before firing. Its purpose is often decorative though it can also be used to mask undesirable features in the clay to which it is applied. The engobe may be applied by painting or by dipping to provide a uniform, smooth, coating. Such decoration is characteristic of slipware. For sgraffito decoration a layer of engobe is scratched through to reveal the underlying clay.
  • Gold: Decoration with gold is used on some high quality ware. Different methods exist for its application, including:
 
Burnishing a plate's gold decoration
  • Best gold – a suspension of gold powder in essential oils mixed with a flux and a mercury salt extended. This can be applied by a painting technique. From the kiln, the decoration is dull and requires burnishing to reveal the full colour
  • Acid Gold – a form of gold decoration developed in the early 1860s at the English factory of Mintons Ltd. The glazed surface is etched with diluted hydrofluoric acid prior to application of the gold. The process demands great skill and is used for the decoration only of ware of the highest class.
  • Bright Gold – consists of a solution of gold sulphoresinate together with other metal resonates and a flux. The name derives from the appearance of the decoration immediately after removal from the kiln as it requires no burnishing
  • Mussel Gold – an old method of gold decoration. It was made by rubbing together gold leaf, sugar and salt, followed by washing to remove solubles
  • Underglaze decoration is applied, by a number of techniques, onto ware before it is glazed, an example is blue and white wares. Can be applied by a number of techniques.
  • In-glaze decoration, is applied on the surface of the glaze before the glost firing.
  • On-glaze decoration is applied on top of the already fired, glazed surface, and then fixed in a second firing at a relatively low temperature.

Glazing edit

 
Spraying glaze onto a vase

Glaze is a glassy coating on pottery, and reasons to use it include decoration, ensuring the item is impermeable to liquids, and minimizing the adherence of pollutants.

Glaze may be applied by spraying, dipping, trailing or brushing on an aqueous suspension of the unfired glaze. The colour of a glaze after it has been fired may be significantly different from before firing. To prevent glazed wares sticking to kiln furniture during firing, either a small part of the object being fired (for example, the foot) is left unglazed or, alternatively, special refractory "spurs" are used as supports. These are removed and discarded after the firing.

Some specialised glazing techniques include:

  • Salt-glazingcommon salt is introduced to the kiln during the firing process. The high temperatures cause the salt to volatilise, depositing it on the surface of the ware to react with the body to form a sodium aluminosilicate glaze. In the 17th and 18th centuries, salt-glazing was used in the manufacture of domestic pottery. Now, except for use by some studio potters, the process is obsolete. The last large-scale application before its demise in the face of environmental clean air restrictions was in the production of salt-glazed sewer-pipes.[38][39]
 
Ash glazed jar from 9th century, Japan.
  • Ash glazing – ash from the combustion of plant matter has been used as the flux component of glazes. The source of the ash was generally the combustion waste from the fuelling of kilns although the potential of ash derived from arable crop wastes has been investigated.[40] Ash glazes are of historical interest in the Far East although there are reports of small-scale use in other locations such as the Catawba Valley Pottery in the United States. They are now limited to small numbers of studio potters who value the unpredictability arising from the variable nature of the raw material.[41]

Health and environmental issues edit

Although many of the environmental effects of pottery production have existed for millennia, some of these have been amplified with modern technology and scales of production. The principal factors for consideration fall into two categories:

Historically, lead poisoning (plumbism) was a significant health concern to those glazing pottery. This was recognised at least as early as the nineteenth century. The first legislation in the UK to limit pottery workers exposure to lead was included in the Factories Act Extension Act in 1864, with further introduced in 1899.[42][43]

Silicosis is an occupational lung disease caused by inhaling large amounts of crystalline silica dust, usually over many years. Workers in the ceramic industry can develop it due to exposure to silica dust in the raw materials; colloquially it has been known as 'Potter's rot'. Less than 10 years after its introduction, in 1720, as a raw material to the British ceramics industry the negative effects of calcined flint on the lungs of workers had been noted.[44] In one study reported in 2022, of 106 UK pottery workers 55 per cent had at least some stage of silicosis.[45][46][47] Exposure to siliceous dusts is reduced by either processing and using the source materials as aqueous suspension or as damp solids, or by the use of dust control measures such as Local exhaust ventilation. These have been mandated by legislation, such as The Pottery (Health and Welfare) Special Regulations 1950.[48][49] The Health and Safety Executive in the UK has produced guidelines on controlling exposure to respirable crystalline silica in potteries, and the British Ceramics Federation provide, as a free download, a guidance booklet. 2023-04-19 at the Wayback Machine

Environmental concerns include off-site water pollution, air pollution, disposal of hazardous materials, disposal of rejected ware and fuel consumption.[50]

History edit

A great part of the history of pottery is prehistoric, part of past pre-literate cultures. Therefore, much of this history can only be found among the artifacts of archaeology. Because pottery is so durable, pottery and shards of pottery survive for millennia at archaeological sites, and are typically the most common and important type of artifact to survive. Many prehistoric cultures are named after the pottery that is the easiest way to identify their sites, and archaeologists develop the ability to recognise different types from the chemistry of small shards.

Before pottery becomes part of a culture, several conditions must generally be met.

  • First, there must be usable clay available. Archaeological sites where the earliest pottery was found were near deposits of readily available clay that could be properly shaped and fired. China has large deposits of a variety of clay, which gave them an advantage in early development of fine pottery. Many countries have large deposits of a variety of clay.
  • Second, it must be possible to heat the pottery to temperatures that will achieve the transformation from raw clay to ceramic. Methods to reliably create fires hot enough to fire pottery did not develop until late in the development of cultures.
  • Third, the potter must have time available to prepare, shape and fire the clay into pottery. Even after control of fire was achieved, humans did not seem to develop pottery until a sedentary life was achieved. It has been hypothesized that pottery was developed only after humans established agriculture, which led to permanent settlements. However, the oldest known pottery is from the Czech Republic and dates to 28,000 BC, at the height of the most recent ice age, long before the beginnings of agriculture.
  • Fourth, there must be a sufficient need for pottery in order to justify the resources required for its production.[51]

Early pottery

 
An Incipient Jōmon pottery vessel reconstructed from fragments (10,000–8,000 BC), Tokyo National Museum, Japan
  • Methods of forming: Hand-shaping was the earliest method used to form vessels. This included the combination of pinching and coiling.
  • Firing: The earliest method for firing pottery wares was the use of bonfires pit fired pottery. Firing times might be short but the peak-temperatures achieved in the fire could be high, perhaps in the region of 900 °C (1,650 °F), and were reached very quickly.[52]
  • Clay: Early potters used whatever clay was available to them in their geographic vicinity. However, the lowest quality common red clay was adequate for low-temperature fires used for the earliest pots. Clay tempered with sand, grit, crushed shell or crushed pottery were often used to make bonfire-fired ceramics because they provided an open-body texture that allowed water and volatile components of the clay to escape freely. The coarser particles in the clay also acted to restrain shrinkage during drying, and hence reduce the risk of cracking.
  • Form: In the main, early bonfire-fired wares were made with rounded bottoms to avoid sharp angles that might be susceptible to cracking.
  • Glazing: the earliest pots were not glazed.
  • The potter's wheel was invented in Mesopotamia sometime between 6,000 and 4,000 BC (Ubaid period), and revolutionised pottery production.
  • Moulds were used to a limited extent as early as the 5th and 6th century BC by the Etruscans[53] and more extensively by the Romans.[54]
  • Slipcasting, a popular method for shaping irregular shaped articles. It was first practised, to a limited extent, in China as early as the Tang dynasty.[55]
  • Transition to kilns: The earliest intentionally constructed were pit-kilns or trench-kilns, holes dug in the ground and covered with fuel. Holes in the ground provided insulation and resulted in better control over firing.[56]
  • Kilns: Pit fire methods were adequate for simple earthenware, but other pottery types needed more sophisticated kilns.

History by region edit

Beginnings of pottery edit

 
Xianren Cave pottery fragments, radiocarbon dated to circa 18,000 BC, China[57][58]
 
Pottery bowl from Jarmo, Mesopotamia, 7100–5800 BC.

Pottery may well have been discovered independently in various places, probably by accidentally creating it at the bottom of fires on a clay soil. The earliest-known ceramic objects are Gravettian figurines such as those discovered at Dolní Věstonice in the modern-day Czech Republic. The Venus of Dolní Věstonice is a Venus figurine, a statuette of a nude female figure dated to 29,000–25,000 BC (Gravettian industry).[2] But there is no evidence of pottery vessels from this period. Weights for looms or fishing-nets are a very common use for the earliest pottery. Sherds have been found in China and Japan from a period between 12,000 and perhaps as long as 18,000 years ago.[4][59] As of 2012, the earliest pottery vessels found anywhere in the world,[60] dating to 20,000 to 19,000 years before the present, was found at Xianrendong Cave in the Jiangxi province of China.[61][62]

Other early pottery vessels include those excavated from the Yuchanyan Cave in southern China, dated from 16,000 BC,[59] and those found in the Amur River basin in the Russian Far East, dated from 14,000 BC.[4][63]

The Odai Yamamoto I site, belonging to the Jōmon period, currently has the oldest pottery in Japan. Excavations in 1998 uncovered earthenware fragments which have been dated as early as 14,500 BC.[64] The term "Jōmon" means "cord-marked" in Japanese. This refers to the markings made on the vessels and figures using sticks with cords during their production. Recent research has elucidated how Jōmon pottery was used by its creators.[65]

It appears that pottery was independently developed in Sub-Saharan Africa during the 10th millennium BC, with findings dating to at least 9,400 BC from central Mali,[5] and in South America during the 9,000s–7,000s BC.[66][6] The Malian finds date to the same period as similar finds from East Asia – the triangle between Siberia, China and Japan – and are associated in both regions to the same climatic changes (at the end of the ice age new grassland develops, enabling hunter-gatherers to expand their habitat), met independently by both cultures with similar developments: the creation of pottery for the storage of wild cereals (pearl millet), and that of small arrowheads for hunting small game typical of grassland.[5] Alternatively, the creation of pottery in the case of the Incipient Jōmon civilisation could be due to the intensive exploitation of freshwater and marine organisms by late glacial foragers, who started developing ceramic containers for their catch.[65]

East Asia edit

 
Chinese Ming dynasty blue-and-white porcelain dish with a dragon
 
Group of 13th-century pieces of Longquan celadon

In Japan, the Jōmon period has a long history of development of Jōmon pottery which was characterized by impressions of rope on the surface of the pottery created by pressing rope into the clay before firing. Glazed Stoneware was being created as early as the 15th century BC in China. A form of Chinese porcelain became a significant Chinese export from the Tang Dynasty (AD 618–906) onwards.[9] Korean potters adopted porcelain as early as the 14th century AD.[67] The ceramic industry has developed greatly since the Goryeo Dynasty, and Goryeo ware, a celadon with unique inlaying techniques, was produced. Later, when white porcelain became common and celadon fell, they created unique ceramics such as Buncheong. Japan's white porcelain was influenced by potters kidnapped during the Japanese invasions of Korea (1592–1598), called The Ceramic Wars, and Japanese engineers introduced it during the Fall of the Ming Dynasty's. Typically, Korean potters who settled in Arita pass on pottery techniques, Shonzui Goradoyu-go brought back the secret of its manufacture from the Chinese kilns at Jingdezhen.[68]

In contrast to Europe, the Chinese social elite used pottery extensively at table, for religious purposes, and for decoration, and the standards of fine pottery were very high. From the Song dynasty (960–1279) for several centuries, the tastes of Chinese elites favoured plain-coloured and exquisitely formed pieces; during this period porcelain was perfected in Ding ware, although it was the only one of the Five Great Kilns of the Song period to use it. The traditional Chinese category of high-fired wares includes stoneware types such as Ru ware, Longquan celadon and Guan ware. Painted wares such as Cizhou ware had a lower status, though they were acceptable for making pillows.

The arrival of Chinese blue and white porcelain was probably a product of the Mongol Yuan dynasty (1271–1368) dispersing artists and craftsmen across its large empire. Both the cobalt stains used for the blue colour, and the style of painted decoration, usually based on plant shapes, were initially borrowed from the Islamic world, which the Mongols had also conquered. At the same time Jingdezhen porcelain, produced in Imperial factories, took the undisputed leading role in production. The new elaborately painted style was now favoured at court, and gradually more colours were added.

The secret of making such porcelain was sought in the Islamic world and later in Europe when examples were imported from the East. Many attempts were made to imitate it in Italy and France. However it was not produced outside of East Asia until 1709 in Germany.[69]

South Asia edit

 
A potter with his pottery wheel, British Raj (1910)

Cord-Impressed style pottery belongs to "Mesolithic" ceramic tradition that developed among Vindhya hunter-gatherers in Central India during the Mesolithic period.[70][71] This ceramic style is also found in later Proto-Neolithic phase in nearby regions.[72] This early type of pottery, also found at the site of Lahuradewa, is currently the oldest known pottery tradition in South Asia, dating back to 7,000–6,000 BC.[73][74][75][76] Wheel-made pottery began to be made during the Mehrgarh Period II (5,500–4,800 BC) and Merhgarh Period III (4,800–3,500 BC), known as the ceramic Neolithic and chalcolithic. Pottery, including items known as the ed-Dur vessels, originated in regions of the Saraswati River / Indus River and have been found in a number of sites in the Indus Civilization.[77][78] Despite an extensive prehistoric record of pottery, including painted wares, little "fine" or luxury pottery was made in the subcontinent in historic times. Hinduism discourages eating off pottery, which probably largely accounts for this. Most traditional Indian pottery vessels are large pots or jars for storage, or small cups or lamps, occasionally treated as disposable. In contrast there are long traditions of sculpted figures, often rather large, in terracotta; this continues with the Bankura horses in Panchmura, West Bengal.

Southeast Asia edit

 
15th-century Vietnamese Chu Dau blue-white porcelain dish with Islamic geometric decorations.
 
Late Neolithic Manunggul Jar from Palawan used for burial, topped with two figures representing the journey of the soul into the afterlife.

Pottery in Southeast Asia is as diverse as its ethnic groups. Each ethnic group has their own set of standards when it comes to pottery arts. Potteries are made due to various reasons, such as trade, food and beverage storage, kitchen usage, religious ceremonies, and burial purposes.[79][80][81][82]

West Asia edit

Around 8000 BC during the Pre-pottery Neolithic period, and before the invention of pottery, several early settlements became experts in crafting beautiful and highly sophisticated containers from stone, using materials such as alabaster or granite, and employing sand to shape and polish. Artisans used the veins in the material to maximum visual effect. Such objects have been found in abundance on the upper Euphrates river, in what is today eastern Syria, especially at the site of Bouqras.[83]

The earliest history of pottery production in the Fertile Crescent starts the Pottery Neolithic and can be divided into four periods, namely: the Hassuna period (7000–6500 BC), the Halaf period (6500–5500 BC), the Ubaid period (5500–4000 BC), and the Uruk period (4000–3100 BC). By about 5000 BC pottery-making was becoming widespread across the region, and spreading out from it to neighbouring areas.

Pottery making began in the 7th millennium BC. The earliest forms, which were found at the Hassuna site, were hand formed from slabs, undecorated, unglazed low-fired pots made from reddish-brown clays.[56] Within the next millennium, wares were decorated with elaborate painted designs and natural forms, incising and burnished.

 
Earthenware Ubaid jar. c. 5,300–4,700 BCE.

The invention of the potter's wheel in Mesopotamia sometime between 6,000 and 4,000 BC (Ubaid period) revolutionised pottery production. Newer kiln designs could fire wares to 1,050 °C (1,920 °F) to 1,200 °C (2,190 °F) which enabled increased possibilities. Production was now carried out by small groups of potters for small cities, rather than individuals making wares for a family. The shapes and range of uses for ceramics and pottery expanded beyond simple vessels to store and carry to specialized cooking utensils, pot stands and rat traps.[84] As the region developed new organizations and political forms, pottery became more elaborate and varied. Some wares were made using moulds, allowing for increased production for the needs of the growing populations. Glazing was commonly used and pottery was more decorated.[85]

In the Chalcolithic period in Mesopotamia, Halafian pottery achieved a level of technical competence and sophistication, not seen until the later developments of Greek pottery with Corinthian and Attic ware.

Europe edit

 
Greek red-figure vase in the krater shape, between 470 and 460 BC, by the Altamura Painter

Europe's oldest pottery, dating from circa 6700 BC, was found on the banks of the Samara River in the middle Volga region of Russia.[86] These sites are known as the Yelshanka culture.

The early inhabitants of Europe developed pottery in the Linear Pottery culture slightly later than the Near East, circa 5500–4500 BC. In the ancient Western Mediterranean elaborately painted earthenware reached very high levels of artistic achievement in the Greek world; there are large numbers of survivals from tombs. Minoan pottery was characterized by complex painted decoration with natural themes.[87] The classical Greek culture began to emerge around 1000 BC featuring a variety of well crafted pottery which now included the human form as a decorating motif. The pottery wheel was now in regular use. Although glazing was known to these potters, it was not widely used. Instead, a more porous clay slip was used for decoration. A wide range of shapes for different uses developed early and remained essentially unchanged during Greek history.[88]

Fine Etruscan pottery was heavily influenced by Greek pottery and often imported Greek potters and painters. Ancient Roman pottery made much less use of painting, but used moulded decoration, allowing industrialized production on a huge scale. Much of the so-called red Samian ware of the Early Roman Empire was produced in modern Germany and France, where entrepreneurs established large potteries. Excavations at Augusta Raurica, near Basel, Switzerland, have revealed a pottery production site in use from the 1st to the 4th century AD.[89]

Pottery was hardly seen on the tables of elites from Hellenistic times until the Renaissance, and most medieval wares were coarse and utilitarian, as the elites ate off metal vessels. Painted Hispano-Moresque ware from Spain, developing the styles of Al-Andalus, became a luxury for late medieval elites, and was adapted in Italy into maiolica in the Italian Renaissance. Both of these were faience or tin-glazed earthenware, and fine faience continued to be made until around 1800 in various countries, especially France, with Nevers faience and several other centres. In the 17th century, imports of Chinese export porcelain and its Japanese equivalent raised the market expectations of fine pottery, and European manufacturers eventually learned to make porcelain, often in the form of soft-paste porcelain, and from the 18th century European porcelain and other wares from a great number of producers became extremely popular, reducing Asian imports.

United Kingdom edit

 
Handpainted bone china cup. England, 1815–1820

The city of Stoke-on-Trent is widely known as "The Potteries" because of the large number of pottery factories or, colloquially, "Pot Banks". It was one of the first industrial cities of the modern era where, as early as 1785, two hundred pottery manufacturers employed 20,000 workers.[90][91] Josiah Wedgwood (1730–1795) was the dominant leader.[92]

In North Staffordshire hundreds of companies produced all kinds of pottery, from tablewares and decorative pieces to industrial items. The main pottery types of earthenware, stoneware and porcelain were all made in large quantities, and the Staffordshire industry was a major innovator in developing new varieties of ceramic bodies such as bone china and jasperware, as well as pioneering transfer printing and other glazing and decorating techniques. In general Staffordshire was strongest in the middle and low price ranges, though the finest and most expensive types of wares were also made.[93]

By the late 18th century North Staffordshire was the largest producer of ceramics in the UK, despite significant hubs elsewhere. Large export markets took Staffordshire pottery around the world, especially in the 19th century.[94] Production had begun to decline in the late 19th century, as other countries developed their industries, and declined notably after World War II. Employment fell from 45,000 in 1975 to 23,000 in 1991, and 13,000 in 2002.[95]

Arabic pottery edit

Early Islamic pottery followed the forms of the regions which the Arabs conquered. Eventually, however, there was cross-fertilization between the regions. This was most notable in the Chinese influences on Islamic pottery. Trade between China and Islam took place via the system of trading posts over the lengthy Silk Road. Middle Eastern nations imported stoneware and later porcelain from China. China imported the minerals for Cobalt blue from the Islamic ruled Persia to decorate their blue and white porcelain, which they then exported to the Islamic world.

Likewise, Arabic art contributed to a lasting pottery form identified as Hispano-Moresque in Andalucia. Unique Islamic forms were also developed, including fritware, lusterware and specialized glazes like tin-glazing, which led to the development of the popular maiolica.[96]

One major emphasis in ceramic development in the Muslim world was the use of tile and decorative tilework.

Americas edit

 
Earthenware effigy of the Sun God. Maya culture, 500–700 CE

Most evidence points to an independent development of pottery in the Native American cultures, with the earliest known dates from Brazil, from 9,500 to 5,000 years ago and 7,000 to 6,000 years ago.[6] Further north in Mesoamerica, dates begin with the Archaic Era (3500–2000 BC), and into the Formative period (2000 BC – AD 200). These cultures did not develop the stoneware, porcelain or glazes found in the Old World. Maya ceramics include finely painted vessels, usually beakers, with elaborate scenes with several figures and texts. Several cultures, beginning with the Olmec, made terracotta sculpture, and sculptural pieces of humans or animals that are also vessels are produced in many places, with Moche portrait vessels among the finest.

Africa edit

 
Faience lotiform chalice. Egypt 1070–664 BCE (reconstructed from eight fragments)

The oldest pottery in the world outside of east Asia can be found in Africa. In 2007, Swiss archaeologists discovered pieces of some of the oldest pottery in Africa at Ounjougou in the central region of Mali, dating to at least 9,400 BC.[5] Excavations in the Bosumpra Cave on the Kwahu Plateau in southeastern Ghana, have revealed well-manufactured pottery decorated with channelling and impressed peigne fileté rigide dating from the early tenth millennium cal. BC.[97] Following the emergence of pottery traditions in the Ounjougou region of Mali around 11,900 BP and in the Bosumpra region of Ghana soon after, ceramics later arrived in the Iho Eleru region of Nigeria.[98] In later periods, a relationship of the introduction of pot-making in some parts of Sub-Saharan Africa with the spread of Bantu languages has been long recognized, although the details remain controversial and awaiting further research, and no consensus has been reached.[12]

Oceania edit

Polynesia, Melanesia and Micronesia

Pottery has been found in archaeological sites across the islands of Oceania. It is attributed to an ancient archaeological culture called the Lapita. Another form of pottery called Plainware is found throughout sites of Oceania. The relationship between Lapita pottery and Plainware is not altogether clear.

The Indigenous Australians never developed pottery.[99] After Europeans came to Australia and settled, they found deposits of clay which were analysed by English potters as excellent for making pottery. Less than 20 years later, Europeans came to Australia and began creating pottery. Since then, ceramic manufacturing, mass-produced pottery and studio pottery have flourished in Australia.[100]

See also edit

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Further reading edit

  • ASTM Standard C 242-01 Standard Terminology of Ceramic Whitewares and Related Products
  • Ashmore, Wendy & Sharer, Robert J., (2000). Discovering Our Past: A Brief Introduction to Archaeology Third Edition. Mountain View, CA: Mayfield Publishing Company. ISBN 978-0-07-297882-7
  • Barnett, William & Hoopes, John (Eds.) (1995). The Emergence of Pottery. Washington: Smithsonian Institution Press. ISBN 1-56098-517-8
  • Childe, V.G., (1951). Man Makes Himself. London: Watts & Co.
  • Freestone, Ian, Gaimster, David R.M., Pottery in the Making: World Ceramic Traditions, 1997, British Museum Publications, ISBN 0-7141-1782-X
  • Rice, Prudence M. (1987). Pottery Analysis – A Sourcebook. Chicago: University of Chicago Press. ISBN 0-226-71118-8.
  • Savage, George, Pottery Through the Ages, Penguin, 1959, ISBN 9789120063317

External links edit

  • Pottery manufacture in recent past
  • UK Pottery Resource
  • Ceramics everywhere

pottery, band, same, name, band, other, uses, potteries, disambiguation, process, products, forming, vessels, other, objects, with, clay, other, materials, which, fired, high, temperatures, give, them, hard, durable, form, place, where, such, wares, made, pott. For the band of the same name see Pottery band For other uses see Potteries disambiguation Pottery is the process and the products of forming vessels and other objects with clay and other raw materials which are fired at high temperatures to give them a hard and durable form The place where such wares are made by a potter is also called a pottery plural potteries The definition of pottery used by the ASTM International is all fired ceramic wares that contain clay when formed except technical structural and refractory products 1 End applications include tableware decorative ware sanitary ware and in technology and industry such as electrical insulators and laboratory ware In art history and archaeology especially of ancient and prehistoric periods pottery often means vessels only and sculpted figurines of the same material are called terracottas Hand building a jar Finished pottery products kept for drying in the sun An 18th century Chinese export porcelain service for the America market Pottery is one of the oldest human inventions originating before the Neolithic period with ceramic objects such as the Gravettian culture Venus of Dolni Vestonice figurine discovered in the Czech Republic dating back to 29 000 25 000 BC 2 However the earliest known pottery vessels were discovered in Jiangxi China which date back to 18 000 BC Other early Neolithic and pre Neolithic pottery artifacts have been found in Jōmon Japan 10 500 BC 3 the Russian Far East 14 000 BC 4 Sub Saharan Africa 9 400 BC 5 South America 9 000s 7 000s BC 6 and the Middle East 7 000s 6 000s BC The pottery market in Boubon Niger Pottery is made by forming a clay body into objects of a desired shape and heating them to high temperatures 600 1600 C in a bonfire pit or kiln which induces reactions that lead to permanent changes including increasing the strength and rigidity of the object Much pottery is purely utilitarian but some can also be regarded as ceramic art An article can be decorated before or after firing Pottery is traditionally divided into three types earthenware stoneware and porcelain All three may be glazed and unglazed All may also be decorated by various techniques In many examples the group a piece belongs to is immediately visually apparent but this is not always the case for example fritware uses no or little clay so falls outside these groups Historic pottery of all these types is often grouped as either fine wares relatively expensive and well made and following the aesthetic taste of the culture concerned or alternatively coarse popular folk or village wares mostly undecorated or simply so and often less well made Cooking in pottery became less popular once metal pots became available 7 but is still used for dishes that benefit from the qualities of pottery cooking typically slow cooking in an oven such as biryani cassoulet daube tagine jollof rice kedjenou cazuela and types of baked beans 7 Contents 1 Main types 1 1 Earthenware 1 2 Stoneware 1 3 Porcelain 2 Archaeology 2 1 Fabric analysis 3 Clay bodies and raw materials 4 Production 4 1 Shaping 4 2 Drying 4 3 Firing 4 3 1 Temperature 4 3 2 Atmosphere 4 3 3 Methods 4 3 4 Stages 4 4 Decorating 4 4 1 Methods 4 5 Glazing 4 6 Health and environmental issues 5 History 5 1 Early pottery 5 2 History by region 5 2 1 Beginnings of pottery 5 2 2 East Asia 5 2 3 South Asia 5 2 4 Southeast Asia 5 2 5 West Asia 5 2 6 Europe 5 2 7 United Kingdom 5 2 8 Arabic pottery 5 2 9 Americas 5 2 10 Africa 5 2 11 Oceania 6 See also 7 References 8 Further reading 9 External linksMain types editEarthenware edit Main article Earthenware nbsp Earthenware jar from the Neolithic Majiayao culture China 3300 to 2000 BCE The earliest forms of pottery were made from clays that were fired at low temperatures initially in pit fires or in open bonfires They were hand formed and undecorated Earthenware can be fired as low as 600 C and is normally fired below 1200 C 8 Because unglazed earthenware is porous it has limited utility for the storage of liquids or as tableware However earthenware has had a continuous history from the Neolithic period to today It can be made from a wide variety of clays some of which fire to a buff brown or black colour with iron in the constituent minerals resulting in a reddish brown Reddish coloured varieties are called terracotta especially when unglazed or used for sculpture The development of ceramic glaze made impermeable pottery possible improving the popularity and practicality of pottery vessels Decoration has evolved and developed through history Stoneware edit Main article Stoneware nbsp 15th century Japanese stoneware storage jar with partial ash glaze Stoneware is pottery that has been fired in a kiln at a relatively high temperature from about 1 100 C to 1 200 C and is stronger and non porous to liquids 9 The Chinese who developed stoneware very early on classify this together with porcelain as high fired wares In contrast stoneware could only be produced in Europe from the late Middle Ages as European kilns were less efficient and the right type of clay less common It remained a speciality of Germany until the Renaissance 10 Stoneware is very tough and practical and much of it has always been utilitarian for the kitchen or storage rather than the table But fine stoneware has been important in China Japan and the West and continues to be made Many utilitarian types have also come to be appreciated as art Porcelain edit Main article Porcelain nbsp Contemporary porcelain plate by Sevres Porcelain is made by heating materials generally including kaolin in a kiln to temperatures between 1 200 and 1 400 C 2 200 and 2 600 F This is higher than used for the other types and achieving these temperatures was a long struggle as well as realizing what materials were needed The toughness strength and translucence of porcelain relative to other types of pottery arises mainly from vitrification and the formation of the mineral mullite within the body at these high temperatures Although porcelain was first made in China the Chinese traditionally do not recognise it as a distinct category grouping it with stoneware as high fired ware opposed to low fired earthenware This confuses the issue of when it was first made A degree of translucency and whiteness was achieved by the Tang dynasty AD 618 906 and considerable quantities were being exported The modern level of whiteness was not reached until much later in the 14th century Porcelain was also made in Korea and in Japan from the end of the 16th century after suitable kaolin was located in those countries It was not made effectively outside East Asia until the 18th century 11 Archaeology edit nbsp Archaeologist cleaning an early mediaeval pottery sherd from Chodlik Poland The study of pottery can help to provide an insight into past cultures Fabric analysis see section below used to analyse the fabric of pottery is important part of archaeology for understanding the archaeological culture of the excavated site by studying the fabric of artifacts such as their usage source material composition decorative pattern color of patterns etc This helps to understand characteristics sophistication habits technology tools trade etc of the people who made and used the pottery Carbon dating reveals the age Sites with similar pottery characteristics have the same culture those sites which have distinct cultural characteristics but with some overlap are indicative of cultural exchange such as trade or living in vicinity or continuity of habitation etc Examples are black and red ware redware Sothi Siswal culture and Painted Grey Ware culture The six fabrics of Kalibangan is a good example of use of fabric analysis in identifying a differentiated culture which was earlier thought to be typical Indus Valley civilisation IVC culture Pottery is durable and fragments at least often survive long after artifacts made from less durable materials have decayed past recognition Combined with other evidence the study of pottery artefacts is helpful in the development of theories on the organisation economic condition and the cultural development of the societies that produced or acquired pottery The study of pottery may also allow inferences to be drawn about a culture s daily life religion social relationships attitudes towards neighbours attitudes to their own world and even the way the culture understood the universe nbsp Terracotta Army following excavation It is valuable to look into pottery as an archaeological record of potential interaction between peoples When pottery is placed within the context of linguistic and migratory patterns it becomes an even more prevalent category of social artifact 12 As proposed by Olivier P Gosselain it is possible to understand ranges of cross cultural interaction by looking closely at the chaine operatoire of ceramic production 13 The methods used to produce pottery in early Sub Saharan Africa are divisible into three categories techniques visible to the eye decoration firing and post firing techniques techniques related to the materials selection or processing of clay etc and techniques of molding or fashioning the clay 13 These three categories can be used to consider the implications of the reoccurrence of a particular sort of pottery in different areas Generally the techniques that are easily visible the first category of those mentioned above are thus readily imitated and may indicate a more distant connection between groups such as trade in the same market or even relatively close settlements 13 Techniques that require more studied replication i e the selection of clay and the fashioning of clay may indicate a closer connection between peoples as these methods are usually only transmissible between potters and those otherwise directly involved in production 13 Such a relationship requires the ability of the involved parties to communicate effectively implying pre existing norms of contact or a shared language between the two Thus the patterns of technical diffusion in pot making that are visible via archaeological findings also reveal patterns in societal interaction Chronologies based on pottery are often essential for dating non literate cultures and are often of help in the dating of historic cultures as well Trace element analysis mostly by neutron activation allows the sources of clay to be accurately identified and the thermoluminescence test can be used to provide an estimate of the date of last firing Examining sherds from prehistory scientists learned that during high temperature firing iron materials in clay record the state of the Earth s magnetic field at that moment Fabric analysis edit The clay body is also called the paste or the fabric which consists of 2 things the clay matrix composed of grains of less than 0 02 mm grains which can be seen using the high powered microscopes or a Scanning Electron Microscope SEM and the clay inclusions which are larger grains of clay and could be seen with the naked eye or a low power binocular microscope For geologists fabric analysis means spatial arrangement of minerals in a rock For Archaeologists the fabric analysis of pottery entails the study of clay matrix and inclusions in the clay body as well as the firing temperature and conditions Analysis is done to examine the following 3 in detail 14 How pottery was made e g material design such as shape and style etc Its decorations such as patterns colors of patterns slipped glazing or unslipped decoration Evidence of type of use The Six fabrics of Kalibangan is a good example of fabric analysis Clay bodies and raw materials edit nbsp Preparation of clay for pottery in India nbsp Removing a filter cake of porcelain body from a filter press Body or clay body is the material used to form pottery Thus a potter might prepare or order from a supplier such an amount of earthenware body stoneware body or porcelain body The compositions of clay bodies varies considerably and include both prepared and as dug the former being by far the dominant type for studio and industry The properties also vary considerably and include plasticity and mechanical strength before firing the firing temperature needed to mature them properties after firing such as permeability mechanical strength and colour There can be regional variations in the properties of raw materials used for pottery and these can lead to wares that are unique in character to a locality The main ingredient of the body is clay Some different types used for pottery include 15 Kaolin is sometimes referred to as china clay because it was first used in China Ball clay An extremely plastic fine grained sedimentary clay which may contain some organic matter Fire clay A clay having a slightly lower percentage of fluxes than kaolin but usually quite plastic It is highly heat resistant form of clay which can be combined with other clays to increase the firing temperature and may be used as an ingredient to make stoneware type bodies Stoneware clay Suitable for creating stoneware Has many of the characteristics between fire clay and ball clay having finer grain like ball clay but is more heat resistant like fire clays Common red clay and shale clay have vegetable and ferric oxide impurities which make them useful for bricks but are generally unsatisfactory for pottery except under special conditions of a particular deposit 16 Bentonite An extremely plastic clay which can be added in small quantities to short clay to increase the plasticity It is common for clays and other raw materials to be mixed to produce clay bodies suited to specific purposes Various mineral processing techniques are often utilised before mixing the raw materials with comminution being effectively universal for non clay materials Examples of non clay materials include Feldspar act as fluxes which lower the vitrification temperature of bodies Quartz an important role is to attenuate drying shrinkage nbsp A section cut through of ball mill which are widely used to mill raw materials for pottery Nepheline syenite an alternative to feldspar Calcined alumina can enhance the fired properties of a body Chamotte also called grog is fired clay which it is crushed and sometimes then milled Helps attenuate drying shrinkage 17 Bone ash produced by the calcination of animal bone A key raw material for bone china Frit produced made by quenching and breaking up a glass of a specific composition Can be used at low additions in some bodies but common uses include as components of a glaze or enamel or for the body of fritware when it usually mixed with larger quantities of quartz sand Various others at low levels of addition such as dolomite limestone talc and wollastonite Production editThe production of pottery includes the following stages nbsp Clay body being extruded from a de airing pug Preparing the clay body Shaping Drying Firing Glazing and decorating this can be undertaken prior to firing Also additional firing stages after decoration may be needed Shaping edit Before being shaped clay must be prepared This may include kneading to ensure an even moisture content throughout the body Air trapped within the clay body needs to be removed or de aired and can be accomplished either by a machine called a vacuum pug or manually by wedging Wedging can also help produce an even moisture content Once a clay body has been kneaded and de aired or wedged it is shaped by a variety of techniques which include Hand building This is the earliest forming method Wares can be constructed by hand from coils of clay combining flat slabs of clay or pinching solid balls of clay or some combination of these Parts of hand built vessels are often joined with the aid of slip Some studio potters find hand building more conducive for one of a kind works of art source source source source source source track A potter using a potter s wheel describes his materials in Romanian and English The potter s wheel In a process called throwing coming from the Old English word thrawan which means to twist or turn 18 a ball of clay is placed in the centre of a turntable called the wheel head which the potter rotates with a stick with foot power or with a variable speed electric motor During the process of throwing the wheel rotates while the solid ball of soft clay is pressed squeezed and pulled gently upwards and outwards into a hollow shape Skill and experience are required to throw pots of an acceptable standard and while the ware may have high artistic merit the reproducibility of the method is poor 19 Because of its inherent limitations throwing can only be used to create wares with radial symmetry on a vertical axis Press moulding a simple technique of shaping by manually pressing a lump of clay body into a porous mould Granulate pressing a highly automated technique of shaping by pressing clay body in a semi dry and granulated form in a mould The body is pressed into the mould by a porous die through which water is pumped at high pressure The fine free flowing granulated body is prepared by spray drying a high solids content slip Granulate pressing also known as dust pressing is widely used in the manufacture of ceramic tiles and increasingly of plates nbsp Jiggering a plate Jiggering and jolleying These operations are carried out on the potter s wheel and allow the time taken to bring wares to a standardized form to be reduced Jiggering is the operation of bringing a shaped tool into contact with the plastic clay of a piece under construction the piece itself being set on a rotating plaster mould on the wheel The jigger tool shapes one face while the mould shapes the other Jiggering is used only in the production of flat wares such as plates but a similar operation jolleying is used in the production of hollow wares such as cups Jiggering and jolleying have been used in the production of pottery since at least the 18th century In large scale factory production jiggering and jolleying are usually automated which allows the operations to be carried out by semi skilled labour Roller head machine This machine is for shaping wares on a rotating mould as in jiggering and jolleying but with a rotary shaping tool replacing the fixed profile The rotary shaping tool is a shallow cone having the same diameter as the ware being formed and shaped to the desired form of the back of the article being made Wares may in this way be shaped using relatively unskilled labour in one operation at a rate of about twelve pieces per minute though this varies with the size of the articles being produced Developed in the UK just after World War II by the company Service Engineers roller heads were quickly adopted by manufacturers around the world it remains the dominant method for producing both flatware and holloware such as plates and mugs 20 Pressure casting Is a development of traditional slipcasting Specially developed polymeric materials allow a mould to be subject to application external pressures of up to 4 0 MPa so much higher than slip casting in plaster moulds where the capillary forces correspond to a pressure of around 0 1 0 2 MPa The high pressure leads to much faster casting rates and hence faster production cycles Furthermore the application of high pressure air through the polymeric moulds upon demoulding the cast means a new casting cycle can be started immediately in the same mould unlike plaster moulds which require lengthy drying times The polymeric materials have much greater durability than plaster and therefore it is possible to achieve shaped products with better dimensional tolerances and much longer mould life Pressure casting was developed in the 1970s for the production of sanitaryware although more recently it has been applied to tableware 21 22 23 24 RAM pressing This is used to shape ware by pressing a bat of prepared clay body into a required shape between two porous moulding plates After pressing compressed air is blown through the porous mould plates to release the shaped wares nbsp Filling a plaster mould with slip nbsp De moulding a large vase after it has been slip cast Slip casting This is suited to the making of shapes that cannot be formed by other methods A liquid slip made by mixing clay body with water is poured into a highly absorbent plaster mould Water from the slip is absorbed into the mould leaving a layer of clay body covering its internal surfaces and taking its internal shape Excess slip is poured out of the mould which is then split open and the moulded object removed Slip casting is widely used in the production of sanitaryware and is also used for making other complex shaped ware such as teapots and figurines Injection moulding This is a shape forming process adapted for the tableware industry from the method long established for the forming of thermoplastic and some metal components 25 It has been called Porcelain Injection Moulding or PIM 26 Suited to the mass production of complex shaped articles one significant advantage of the technique is that it allows the production of a cup including the handle in a single process and thereby eliminates the handle fixing operation and produces a stronger bond between cup and handle 27 The feed to the mould die is a mix of approximately 50 to 60 per cent unfired body in powder form together with 40 to 50 per cent organic additives composed of binders lubricants and plasticisers 26 The technique is not as widely used as other shaping methods 28 3D printing There are two methods One involves the layered deposition of soft clay body similar to fused deposition modelling FDM and the other uses powder binding techniques where clay body in dry powder form is fused together layer upon layer with a liquid Injection moulding of ceramic tableware has been developed though it has yet to be fully commercialised 29 Drying edit Prior to firing the water in an article needs to be removed A number of different stages or conditions of the article can be identified Greenware refers to unfired objects At sufficient moisture content bodies at this stage are in their most plastic form as they are soft and malleable and hence can be easily deformed by handling Leather hard refers to a clay body that has been dried partially At this stage the clay object has approximately 15 moisture content Clay bodies at this stage are very firm and only slightly pliable Trimming and handle attachment often occurs at the leather hard state Bone dry refers to clay bodies when they reach a moisture content at or near 0 At that moisture content the item is ready to be fired Additionally the piece is extremely fragile at this stage and must be handled with care Firing edit nbsp A modern tunnel kiln Firing produces permanent and irreversible chemical and physical changes in the body The pre fired clay is kaolinite which is transformed into Metakaolin It is only after firing that the article or material is pottery In lower fired pottery the changes include sintering the fusing together of coarser particles in the body at their points of contact with each other In the case of porcelain where higher firing temperatures are used the physical chemical and mineralogical properties of the constituents in the body are greatly altered In all cases the reason for firing is to permanently harden the wares and the firing regime must be appropriate to the materials used Temperature edit As a rough guide modern earthenwares are normally fired at temperatures in the range of about 1 000 C 1 830 F to 1 200 C 2 190 F stonewares at between about 1 100 C 2 010 F to 1 300 C 2 370 F and porcelains at between about 1 200 C 2 190 F to 1 400 C 2 550 F Historically reaching high temperatures was a long lasting challenge and earthenware can be fired effectively as low as 600 C 1 112 F achievable in primitive pit firing Atmosphere edit nbsp A bottle kiln The atmosphere within a kiln during firing can affect the appearance of the body and glaze Key to this is the differing colours of the various oxides of iron such as iron III oxide also known as ferric oxide or Fe2O3 which is associated with brown red colours whilst iron II oxide also known as ferrous oxide or FeO is associated with much darker colours including black The oxygen concentration in the kiln influences the type and relative proportions of these iron oxides in fired the body and glaze for example where there is a lack of oxygen during firing the associated carbon monoxide CO will readily react with oxygen in Fe2O3 in the raw materials and cause it to be reduced to FeO 30 31 An oxygen deficient condition called a reducing atmosphere is generated by preventing the complete combustion of the kiln fuel this is achieved by deliberately restricting the supply of air or by supplying an excess of fuel 30 31 Methods edit Firing pottery can be done using a variety of methods with a kiln being the usual firing method Both the maximum temperature and the duration of firing influences the final characteristics of the ceramic Thus the maximum temperature within a kiln is often held constant for a period of time to soak the wares to produce the maturity required in the body of the wares Kilns may be heated by burning combustible materials such as wood coal and gas or by electricity The use of microwave energy has been investigated 32 When used as fuels coal and wood can introduce smoke soot and ash into the kiln which can affect the appearance of unprotected wares For this reason wares fired in wood or coal fired kilns are often placed in the kiln in saggars ceramic boxes to protect them Modern kilns fuelled by gas or electricity are cleaner and more easily controlled than older wood or coal fired kilns and often allow shorter firing times to be used Niche techniques include nbsp Pottery firing mound in Kalabougou Mali Much of the earliest pottery would have been fired in a similar fashion In a Western adaptation of traditional Japanese Raku ware firing wares are removed from the kiln while hot and smothered in ashes paper or woodchips which produces a distinctive carbonised appearance This technique is also used in Malaysia in creating traditional labu sayung 33 34 In Mali a firing mound is used rather than a brick or stone kiln Unfired pots are first brought to the place where a mound will be built customarily by the women and girls of the village The mound s foundation is made by placing sticks on the ground then pots are positioned on and amid the branches and then grass is piled high to complete the mound Although the mound contains the pots of many women who are related through their husbands extended families each women is responsible for her own or her immediate family s pots within the mound When a mound is completed and the ground around has been swept clean of residual combustible material a senior potter lights the fire A handful of grass is lit and the woman runs around the circumference of the mound touching the burning torch to the dried grass Some mounds are still being constructed as others are already burning 35 Stages edit Biscuit or bisque 36 37 refers to the clay after the object is shaped to the desired form and fired in the kiln for the first time known as bisque fired or biscuit fired This firing results in both chemical and physical changes to the minerals of the clay body Glaze fired is the final stage of some pottery making or glost fired 19 A glaze may be applied to the biscuit ware and the object can be decorated in several ways After this the object is glazed fired which causes the glaze material to melt then adhere to the object Depending on the temperature schedule the glaze firing may also further mature the body as chemical and physical changes continue Decorating edit Pottery may be decorated in many different ways Some decoration can be done before or after the firing and may be undertaken before or after glazing Methods edit nbsp Hand painting a vase Painting has been used since early prehistoric times and can be very elaborate The painting is often applied to pottery that has been fired once and may then be overlaid with a glaze afterwards Many pigments change colour when fired and the painter must allow for this Glaze Perhaps the most common form of decoration that also serves as protection to the pottery by being tougher and keeping liquid from penetrating the pottery Glaze may be colourless especially over painting or coloured and opaque Crystalline glaze acharacterised by crystalline clusters of various shapes and colours embedded in a more uniform and opaque glaze Produced by the slow cooling of the glost fire Carving Pottery vessels may be decorated by shallow carving of the clay body typically with a knife or similar instrument used on the wheel This is common in Chinese porcelain of the classic periods Burnishing The surface of pottery wares may be burnished prior to firing by rubbing with a suitable instrument of wood steel or stone to produce a polished finish that survives firing It is possible to produce very highly polished wares when fine clays are used or when the polishing is carried out on wares that have been partially dried and contain little water though wares in this condition are extremely fragile and the risk of breakage is high Terra Sigillata is an ancient form of decorating ceramics that was first developed in Ancient Greece Lithography also called litho although the alternative names of transfer print or decal are also common These are used to apply designs to articles The litho comprises three layers the colour or image layer which comprises the decorative design the cover coat a clear protective layer which may incorporate a low melting glass and the backing paper on which the design is printed by screen printing or lithography There are various methods of transferring the design while removing the backing paper some of which are suited to machine application Banding is the application by hand or by machine of a band of colour to the edge of a plate or cup Also known as lining this operation is often carried out on a potter s wheel Agateware named after its resemblance to the mineral agate is produced by partially blending clays of differing colours In Japan the term neriage is used whilst in China where such things have been made since at least the Tang Dynasty they are called marbled wares Engobe a clay slip is used to coat the surface of pottery usually before firing Its purpose is often decorative though it can also be used to mask undesirable features in the clay to which it is applied The engobe may be applied by painting or by dipping to provide a uniform smooth coating Such decoration is characteristic of slipware For sgraffito decoration a layer of engobe is scratched through to reveal the underlying clay Gold Decoration with gold is used on some high quality ware Different methods exist for its application including nbsp Burnishing a plate s gold decoration Best gold a suspension of gold powder in essential oils mixed with a flux and a mercury salt extended This can be applied by a painting technique From the kiln the decoration is dull and requires burnishing to reveal the full colour Acid Gold a form of gold decoration developed in the early 1860s at the English factory of Mintons Ltd The glazed surface is etched with diluted hydrofluoric acid prior to application of the gold The process demands great skill and is used for the decoration only of ware of the highest class Bright Gold consists of a solution of gold sulphoresinate together with other metal resonates and a flux The name derives from the appearance of the decoration immediately after removal from the kiln as it requires no burnishing Mussel Gold an old method of gold decoration It was made by rubbing together gold leaf sugar and salt followed by washing to remove solubles Underglaze decoration is applied by a number of techniques onto ware before it is glazed an example is blue and white wares Can be applied by a number of techniques In glaze decoration is applied on the surface of the glaze before the glost firing On glaze decoration is applied on top of the already fired glazed surface and then fixed in a second firing at a relatively low temperature Glazing edit Main article Ceramic glaze nbsp Spraying glaze onto a vase Glaze is a glassy coating on pottery and reasons to use it include decoration ensuring the item is impermeable to liquids and minimizing the adherence of pollutants Glaze may be applied by spraying dipping trailing or brushing on an aqueous suspension of the unfired glaze The colour of a glaze after it has been fired may be significantly different from before firing To prevent glazed wares sticking to kiln furniture during firing either a small part of the object being fired for example the foot is left unglazed or alternatively special refractory spurs are used as supports These are removed and discarded after the firing Some specialised glazing techniques include Salt glazing common salt is introduced to the kiln during the firing process The high temperatures cause the salt to volatilise depositing it on the surface of the ware to react with the body to form a sodium aluminosilicate glaze In the 17th and 18th centuries salt glazing was used in the manufacture of domestic pottery Now except for use by some studio potters the process is obsolete The last large scale application before its demise in the face of environmental clean air restrictions was in the production of salt glazed sewer pipes 38 39 nbsp Ash glazed jar from 9th century Japan Ash glazing ash from the combustion of plant matter has been used as the flux component of glazes The source of the ash was generally the combustion waste from the fuelling of kilns although the potential of ash derived from arable crop wastes has been investigated 40 Ash glazes are of historical interest in the Far East although there are reports of small scale use in other locations such as the Catawba Valley Pottery in the United States They are now limited to small numbers of studio potters who value the unpredictability arising from the variable nature of the raw material 41 Health and environmental issues edit Although many of the environmental effects of pottery production have existed for millennia some of these have been amplified with modern technology and scales of production The principal factors for consideration fall into two categories Effects on workers Notable risks include silicosis heavy metal poisoning poor indoor air quality dangerous sound levels and possible over illumination Effects on the general environment Historically lead poisoning plumbism was a significant health concern to those glazing pottery This was recognised at least as early as the nineteenth century The first legislation in the UK to limit pottery workers exposure to lead was included in the Factories Act Extension Act in 1864 with further introduced in 1899 42 43 Silicosis is an occupational lung disease caused by inhaling large amounts of crystalline silica dust usually over many years Workers in the ceramic industry can develop it due to exposure to silica dust in the raw materials colloquially it has been known as Potter s rot Less than 10 years after its introduction in 1720 as a raw material to the British ceramics industry the negative effects of calcined flint on the lungs of workers had been noted 44 In one study reported in 2022 of 106 UK pottery workers 55 per cent had at least some stage of silicosis 45 46 47 Exposure to siliceous dusts is reduced by either processing and using the source materials as aqueous suspension or as damp solids or by the use of dust control measures such as Local exhaust ventilation These have been mandated by legislation such as The Pottery Health and Welfare Special Regulations 1950 48 49 The Health and Safety Executive in the UK has produced guidelines on controlling exposure to respirable crystalline silica in potteries and the British Ceramics Federation provide as a free download a guidance booklet Archived 2023 04 19 at the Wayback MachineEnvironmental concerns include off site water pollution air pollution disposal of hazardous materials disposal of rejected ware and fuel consumption 50 History editMain article Ceramic art History A great part of the history of pottery is prehistoric part of past pre literate cultures Therefore much of this history can only be found among the artifacts of archaeology Because pottery is so durable pottery and shards of pottery survive for millennia at archaeological sites and are typically the most common and important type of artifact to survive Many prehistoric cultures are named after the pottery that is the easiest way to identify their sites and archaeologists develop the ability to recognise different types from the chemistry of small shards Before pottery becomes part of a culture several conditions must generally be met First there must be usable clay available Archaeological sites where the earliest pottery was found were near deposits of readily available clay that could be properly shaped and fired China has large deposits of a variety of clay which gave them an advantage in early development of fine pottery Many countries have large deposits of a variety of clay Second it must be possible to heat the pottery to temperatures that will achieve the transformation from raw clay to ceramic Methods to reliably create fires hot enough to fire pottery did not develop until late in the development of cultures Third the potter must have time available to prepare shape and fire the clay into pottery Even after control of fire was achieved humans did not seem to develop pottery until a sedentary life was achieved It has been hypothesized that pottery was developed only after humans established agriculture which led to permanent settlements However the oldest known pottery is from the Czech Republic and dates to 28 000 BC at the height of the most recent ice age long before the beginnings of agriculture Fourth there must be a sufficient need for pottery in order to justify the resources required for its production 51 Early pottery nbsp An Incipient Jōmon pottery vessel reconstructed from fragments 10 000 8 000 BC Tokyo National Museum Japan Methods of forming Hand shaping was the earliest method used to form vessels This included the combination of pinching and coiling Firing The earliest method for firing pottery wares was the use of bonfires pit fired pottery Firing times might be short but the peak temperatures achieved in the fire could be high perhaps in the region of 900 C 1 650 F and were reached very quickly 52 Clay Early potters used whatever clay was available to them in their geographic vicinity However the lowest quality common red clay was adequate for low temperature fires used for the earliest pots Clay tempered with sand grit crushed shell or crushed pottery were often used to make bonfire fired ceramics because they provided an open body texture that allowed water and volatile components of the clay to escape freely The coarser particles in the clay also acted to restrain shrinkage during drying and hence reduce the risk of cracking Form In the main early bonfire fired wares were made with rounded bottoms to avoid sharp angles that might be susceptible to cracking Glazing the earliest pots were not glazed The potter s wheel was invented in Mesopotamia sometime between 6 000 and 4 000 BC Ubaid period and revolutionised pottery production Moulds were used to a limited extent as early as the 5th and 6th century BC by the Etruscans 53 and more extensively by the Romans 54 Slipcasting a popular method for shaping irregular shaped articles It was first practised to a limited extent in China as early as the Tang dynasty 55 Transition to kilns The earliest intentionally constructed were pit kilns or trench kilns holes dug in the ground and covered with fuel Holes in the ground provided insulation and resulted in better control over firing 56 Kilns Pit fire methods were adequate for simple earthenware but other pottery types needed more sophisticated kilns History by region edit Beginnings of pottery edit nbsp Xianren Cave pottery fragments radiocarbon dated to circa 18 000 BC China 57 58 nbsp Pottery bowl from Jarmo Mesopotamia 7100 5800 BC Pottery may well have been discovered independently in various places probably by accidentally creating it at the bottom of fires on a clay soil The earliest known ceramic objects are Gravettian figurines such as those discovered at Dolni Vestonice in the modern day Czech Republic The Venus of Dolni Vestonice is a Venus figurine a statuette of a nude female figure dated to 29 000 25 000 BC Gravettian industry 2 But there is no evidence of pottery vessels from this period Weights for looms or fishing nets are a very common use for the earliest pottery Sherds have been found in China and Japan from a period between 12 000 and perhaps as long as 18 000 years ago 4 59 As of 2012 the earliest pottery vessels found anywhere in the world 60 dating to 20 000 to 19 000 years before the present was found at Xianrendong Cave in the Jiangxi province of China 61 62 Other early pottery vessels include those excavated from the Yuchanyan Cave in southern China dated from 16 000 BC 59 and those found in the Amur River basin in the Russian Far East dated from 14 000 BC 4 63 The Odai Yamamoto I site belonging to the Jōmon period currently has the oldest pottery in Japan Excavations in 1998 uncovered earthenware fragments which have been dated as early as 14 500 BC 64 The term Jōmon means cord marked in Japanese This refers to the markings made on the vessels and figures using sticks with cords during their production Recent research has elucidated how Jōmon pottery was used by its creators 65 It appears that pottery was independently developed in Sub Saharan Africa during the 10th millennium BC with findings dating to at least 9 400 BC from central Mali 5 and in South America during the 9 000s 7 000s BC 66 6 The Malian finds date to the same period as similar finds from East Asia the triangle between Siberia China and Japan and are associated in both regions to the same climatic changes at the end of the ice age new grassland develops enabling hunter gatherers to expand their habitat met independently by both cultures with similar developments the creation of pottery for the storage of wild cereals pearl millet and that of small arrowheads for hunting small game typical of grassland 5 Alternatively the creation of pottery in the case of the Incipient Jōmon civilisation could be due to the intensive exploitation of freshwater and marine organisms by late glacial foragers who started developing ceramic containers for their catch 65 East Asia edit Main articles Chinese ceramics Japanese pottery and Korean pottery nbsp Chinese Ming dynasty blue and white porcelain dish with a dragon nbsp Group of 13th century pieces of Longquan celadon In Japan the Jōmon period has a long history of development of Jōmon pottery which was characterized by impressions of rope on the surface of the pottery created by pressing rope into the clay before firing Glazed Stoneware was being created as early as the 15th century BC in China A form of Chinese porcelain became a significant Chinese export from the Tang Dynasty AD 618 906 onwards 9 Korean potters adopted porcelain as early as the 14th century AD 67 The ceramic industry has developed greatly since the Goryeo Dynasty and Goryeo ware a celadon with unique inlaying techniques was produced Later when white porcelain became common and celadon fell they created unique ceramics such as Buncheong Japan s white porcelain was influenced by potters kidnapped during the Japanese invasions of Korea 1592 1598 called The Ceramic Wars and Japanese engineers introduced it during the Fall of the Ming Dynasty s Typically Korean potters who settled in Arita pass on pottery techniques Shonzui Goradoyu go brought back the secret of its manufacture from the Chinese kilns at Jingdezhen 68 In contrast to Europe the Chinese social elite used pottery extensively at table for religious purposes and for decoration and the standards of fine pottery were very high From the Song dynasty 960 1279 for several centuries the tastes of Chinese elites favoured plain coloured and exquisitely formed pieces during this period porcelain was perfected in Ding ware although it was the only one of the Five Great Kilns of the Song period to use it The traditional Chinese category of high fired wares includes stoneware types such as Ru ware Longquan celadon and Guan ware Painted wares such as Cizhou ware had a lower status though they were acceptable for making pillows The arrival of Chinese blue and white porcelain was probably a product of the Mongol Yuan dynasty 1271 1368 dispersing artists and craftsmen across its large empire Both the cobalt stains used for the blue colour and the style of painted decoration usually based on plant shapes were initially borrowed from the Islamic world which the Mongols had also conquered At the same time Jingdezhen porcelain produced in Imperial factories took the undisputed leading role in production The new elaborately painted style was now favoured at court and gradually more colours were added The secret of making such porcelain was sought in the Islamic world and later in Europe when examples were imported from the East Many attempts were made to imitate it in Italy and France However it was not produced outside of East Asia until 1709 in Germany 69 South Asia edit See also Pottery in the Indian subcontinent nbsp A potter with his pottery wheel British Raj 1910 Cord Impressed style pottery belongs to Mesolithic ceramic tradition that developed among Vindhya hunter gatherers in Central India during the Mesolithic period 70 71 This ceramic style is also found in later Proto Neolithic phase in nearby regions 72 This early type of pottery also found at the site of Lahuradewa is currently the oldest known pottery tradition in South Asia dating back to 7 000 6 000 BC 73 74 75 76 Wheel made pottery began to be made during the Mehrgarh Period II 5 500 4 800 BC and Merhgarh Period III 4 800 3 500 BC known as the ceramic Neolithic and chalcolithic Pottery including items known as the ed Dur vessels originated in regions of the Saraswati River Indus River and have been found in a number of sites in the Indus Civilization 77 78 Despite an extensive prehistoric record of pottery including painted wares little fine or luxury pottery was made in the subcontinent in historic times Hinduism discourages eating off pottery which probably largely accounts for this Most traditional Indian pottery vessels are large pots or jars for storage or small cups or lamps occasionally treated as disposable In contrast there are long traditions of sculpted figures often rather large in terracotta this continues with the Bankura horses in Panchmura West Bengal Southeast Asia edit See also Vietnamese ceramics Thai ceramics and Philippine ceramics nbsp 15th century Vietnamese Chu Dau blue white porcelain dish with Islamic geometric decorations nbsp Late Neolithic Manunggul Jar from Palawan used for burial topped with two figures representing the journey of the soul into the afterlife Pottery in Southeast Asia is as diverse as its ethnic groups Each ethnic group has their own set of standards when it comes to pottery arts Potteries are made due to various reasons such as trade food and beverage storage kitchen usage religious ceremonies and burial purposes 79 80 81 82 West Asia edit See also Levantine pottery Persian pottery and Pottery of ancient Cyprus Around 8000 BC during the Pre pottery Neolithic period and before the invention of pottery several early settlements became experts in crafting beautiful and highly sophisticated containers from stone using materials such as alabaster or granite and employing sand to shape and polish Artisans used the veins in the material to maximum visual effect Such objects have been found in abundance on the upper Euphrates river in what is today eastern Syria especially at the site of Bouqras 83 The earliest history of pottery production in the Fertile Crescent starts the Pottery Neolithic and can be divided into four periods namely the Hassuna period 7000 6500 BC the Halaf period 6500 5500 BC the Ubaid period 5500 4000 BC and the Uruk period 4000 3100 BC By about 5000 BC pottery making was becoming widespread across the region and spreading out from it to neighbouring areas Pottery making began in the 7th millennium BC The earliest forms which were found at the Hassuna site were hand formed from slabs undecorated unglazed low fired pots made from reddish brown clays 56 Within the next millennium wares were decorated with elaborate painted designs and natural forms incising and burnished nbsp Earthenware Ubaid jar c 5 300 4 700 BCE The invention of the potter s wheel in Mesopotamia sometime between 6 000 and 4 000 BC Ubaid period revolutionised pottery production Newer kiln designs could fire wares to 1 050 C 1 920 F to 1 200 C 2 190 F which enabled increased possibilities Production was now carried out by small groups of potters for small cities rather than individuals making wares for a family The shapes and range of uses for ceramics and pottery expanded beyond simple vessels to store and carry to specialized cooking utensils pot stands and rat traps 84 As the region developed new organizations and political forms pottery became more elaborate and varied Some wares were made using moulds allowing for increased production for the needs of the growing populations Glazing was commonly used and pottery was more decorated 85 In the Chalcolithic period in Mesopotamia Halafian pottery achieved a level of technical competence and sophistication not seen until the later developments of Greek pottery with Corinthian and Attic ware Europe edit Main articles Minoan pottery Pottery of ancient Greece and Ancient Roman pottery nbsp Greek red figure vase in the krater shape between 470 and 460 BC by the Altamura Painter Europe s oldest pottery dating from circa 6700 BC was found on the banks of the Samara River in the middle Volga region of Russia 86 These sites are known as the Yelshanka culture The early inhabitants of Europe developed pottery in the Linear Pottery culture slightly later than the Near East circa 5500 4500 BC In the ancient Western Mediterranean elaborately painted earthenware reached very high levels of artistic achievement in the Greek world there are large numbers of survivals from tombs Minoan pottery was characterized by complex painted decoration with natural themes 87 The classical Greek culture began to emerge around 1000 BC featuring a variety of well crafted pottery which now included the human form as a decorating motif The pottery wheel was now in regular use Although glazing was known to these potters it was not widely used Instead a more porous clay slip was used for decoration A wide range of shapes for different uses developed early and remained essentially unchanged during Greek history 88 Fine Etruscan pottery was heavily influenced by Greek pottery and often imported Greek potters and painters Ancient Roman pottery made much less use of painting but used moulded decoration allowing industrialized production on a huge scale Much of the so called red Samian ware of the Early Roman Empire was produced in modern Germany and France where entrepreneurs established large potteries Excavations at Augusta Raurica near Basel Switzerland have revealed a pottery production site in use from the 1st to the 4th century AD 89 Pottery was hardly seen on the tables of elites from Hellenistic times until the Renaissance and most medieval wares were coarse and utilitarian as the elites ate off metal vessels Painted Hispano Moresque ware from Spain developing the styles of Al Andalus became a luxury for late medieval elites and was adapted in Italy into maiolica in the Italian Renaissance Both of these were faience or tin glazed earthenware and fine faience continued to be made until around 1800 in various countries especially France with Nevers faience and several other centres In the 17th century imports of Chinese export porcelain and its Japanese equivalent raised the market expectations of fine pottery and European manufacturers eventually learned to make porcelain often in the form of soft paste porcelain and from the 18th century European porcelain and other wares from a great number of producers became extremely popular reducing Asian imports United Kingdom edit Main articles Wedgwood Staffordshire figure Royal Doulton Mintons Midwinter Pottery and Spode nbsp Handpainted bone china cup England 1815 1820 The city of Stoke on Trent is widely known as The Potteries because of the large number of pottery factories or colloquially Pot Banks It was one of the first industrial cities of the modern era where as early as 1785 two hundred pottery manufacturers employed 20 000 workers 90 91 Josiah Wedgwood 1730 1795 was the dominant leader 92 In North Staffordshire hundreds of companies produced all kinds of pottery from tablewares and decorative pieces to industrial items The main pottery types of earthenware stoneware and porcelain were all made in large quantities and the Staffordshire industry was a major innovator in developing new varieties of ceramic bodies such as bone china and jasperware as well as pioneering transfer printing and other glazing and decorating techniques In general Staffordshire was strongest in the middle and low price ranges though the finest and most expensive types of wares were also made 93 By the late 18th century North Staffordshire was the largest producer of ceramics in the UK despite significant hubs elsewhere Large export markets took Staffordshire pottery around the world especially in the 19th century 94 Production had begun to decline in the late 19th century as other countries developed their industries and declined notably after World War II Employment fell from 45 000 in 1975 to 23 000 in 1991 and 13 000 in 2002 95 Arabic pottery edit Main articles Islamic pottery and Persian pottery Early Islamic pottery followed the forms of the regions which the Arabs conquered Eventually however there was cross fertilization between the regions This was most notable in the Chinese influences on Islamic pottery Trade between China and Islam took place via the system of trading posts over the lengthy Silk Road Middle Eastern nations imported stoneware and later porcelain from China China imported the minerals for Cobalt blue from the Islamic ruled Persia to decorate their blue and white porcelain which they then exported to the Islamic world Likewise Arabic art contributed to a lasting pottery form identified as Hispano Moresque in Andalucia Unique Islamic forms were also developed including fritware lusterware and specialized glazes like tin glazing which led to the development of the popular maiolica 96 One major emphasis in ceramic development in the Muslim world was the use of tile and decorative tilework nbsp Bowl painted on slip under transparent glaze polychrome 9th or 10th century Nishapur National Museum of Iran nbsp Persian mina i ware bowl with couple in a garden around 1200 These wares are the first to use overglaze enamel decoration nbsp Chess set Shatrang Gaming pieces 12th century Nishapur glazed fritware Metropolitan Museum of Art Americas edit Main article Ceramics of indigenous peoples of the Americas nbsp Earthenware effigy of the Sun God Maya culture 500 700 CE Most evidence points to an independent development of pottery in the Native American cultures with the earliest known dates from Brazil from 9 500 to 5 000 years ago and 7 000 to 6 000 years ago 6 Further north in Mesoamerica dates begin with the Archaic Era 3500 2000 BC and into the Formative period 2000 BC AD 200 These cultures did not develop the stoneware porcelain or glazes found in the Old World Maya ceramics include finely painted vessels usually beakers with elaborate scenes with several figures and texts Several cultures beginning with the Olmec made terracotta sculpture and sculptural pieces of humans or animals that are also vessels are produced in many places with Moche portrait vessels among the finest Africa edit nbsp Faience lotiform chalice Egypt 1070 664 BCE reconstructed from eight fragments The oldest pottery in the world outside of east Asia can be found in Africa In 2007 Swiss archaeologists discovered pieces of some of the oldest pottery in Africa at Ounjougou in the central region of Mali dating to at least 9 400 BC 5 Excavations in the Bosumpra Cave on the Kwahu Plateau in southeastern Ghana have revealed well manufactured pottery decorated with channelling and impressed peigne filete rigide dating from the early tenth millennium cal BC 97 Following the emergence of pottery traditions in the Ounjougou region of Mali around 11 900 BP and in the Bosumpra region of Ghana soon after ceramics later arrived in the Iho Eleru region of Nigeria 98 In later periods a relationship of the introduction of pot making in some parts of Sub Saharan Africa with the spread of Bantu languages has been long recognized although the details remain controversial and awaiting further research and no consensus has been reached 12 Oceania edit Polynesia Melanesia and MicronesiaPottery has been found in archaeological sites across the islands of Oceania It is attributed to an ancient archaeological culture called the Lapita Another form of pottery called Plainware is found throughout sites of Oceania The relationship between Lapita pottery and Plainware is not altogether clear The Indigenous Australians never developed pottery 99 After Europeans came to Australia and settled they found deposits of clay which were analysed by English potters as excellent for making pottery Less than 20 years later Europeans came to Australia and began creating pottery Since then ceramic manufacturing mass produced pottery and studio pottery have flourished in Australia 100 See also editGlossary of pottery terms History of ceramic art Chinese ceramics Korean ceramics Ceramics of indigenous peoples of the Americas Delftware Faience MajolicaReferences edit Standard Terminology Of Ceramic Whitewares And Related Products ASTM C 242 01 2007 ASTM International a b Lienhard John H November 24 1989 No 359 The Dolni Vestonice Ceramics The Engines of Our Ingenuity University of Houston Archived from the original on January 9 2010 Retrieved September 4 2010 Diamond Jared June 1998 Japanese Roots Discover Discover Media LLC Archived from the original on 2010 03 11 Retrieved 2010 07 10 a b c AMS 14C Age Of The Earliest Pottery From The Russian Far East 1996 2002 Derevianko A P Kuzmin Y V Burr G S Jull A J T Kim J C Nuclear Instruments And 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Pottery and Porcelain with References to Genuine Specimens and Notices of Eminent Potters 1900 online Brian Dolan Wedgwood The First Tycoon 2004 Aileen Dawson The Growth of the Staffordshire Ceramic Industry in Freestone Ian Gaimster David R M eds Pottery in the Making World Ceramic Traditions 1997 pp 200 205 Dawson 200 201 Ridge Mian 29 May 2002 Gone to pot The Guardian Nelson 1966 pp 23 26 Watson Derek J 2 October 2017 Bosumpra revisited 12 500 years on the Kwahu Plateau Ghana as viewed from On top of the hill Azania Archaeological Research in Africa 52 4 437 517 doi 10 1080 0067270X 2017 1393925 S2CID 165755536 Cerasoni Jacopo Niccolo et al 17 March 2023 Human interactions with tropical environments over the last 14 000 years at Iho Eleru Nigeria iScience 26 3 106153 Bibcode 2023iSci 26j6153C doi 10 1016 j isci 2023 106153 ISSN 2589 0042 OCLC 9806331324 PMC 9950523 PMID 36843842 S2CID 256747182 Aboriginal Culture Introduction Archived from the original on March 16 2015 History of Australian Pottery Archived from the original on March 17 2012 Further reading editASTM Standard C 242 01 Standard Terminology of Ceramic Whitewares and Related Products Ashmore Wendy amp Sharer Robert J 2000 Discovering Our Past A Brief Introduction to Archaeology Third Edition Mountain View CA Mayfield Publishing Company ISBN 978 0 07 297882 7 Barnett William amp Hoopes John Eds 1995 The Emergence of Pottery Washington Smithsonian Institution Press ISBN 1 56098 517 8 Childe V G 1951 Man Makes Himself London Watts amp Co Freestone Ian Gaimster David R M Pottery in the Making World Ceramic Traditions 1997 British Museum Publications ISBN 0 7141 1782 X Rice Prudence M 1987 Pottery Analysis A Sourcebook Chicago University of Chicago Press ISBN 0 226 71118 8 Savage George Pottery Through the Ages Penguin 1959 ISBN 9789120063317External links edit nbsp Wikiquote has quotations related to Pottery nbsp Wikimedia Commons has media related to Pottery Pottery manufacture in recent past Stoke on Trent Museums Ceramics Collections Online UK Pottery Resource Ceramics everywhere Retrieved from https en wikipedia org w index php title Pottery amp oldid 1220504579 Firing, wikipedia, wiki, book, books, library,

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