Ceramic engineering can be elucidated as a technology of fabricating objects from non metallic and inorganic materials.
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The term includes the purification of raw materials the study and production of the chemical.
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This is done either by the action of heat or at lower temperatures using precipitation reactions from high purity chemical solutions.
Inorganic nonmetallic materials that consist of metallic and nonmetallic elements bonded together primarily by ionic and or covalent bonds its chemical compositions vary considerably from simple compounds to mixtures of many complex phases bonded together.
Ceramics to be most frequently silicates oxides nitrides and carbides typically insulative to the passage of electricity and heat more resistant to high temperatures and harsh environments than metals and polymers hard but very brittle 3.
These material properties are utilized to produce number of commercial and domestic products such as pottery bricks advanced functional items etc.
Ceramic materials can be identified by their general properties like high hardness brittleness chemical stability and low thermal conductivity.
Advanced ceramics are also referred to as technical ceramics high performance ceramics engineering ceramics industrial ceramics or high tech ceramics.
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Ceramic engineering is the science and technology of creating objects from inorganic non metallic materials.
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Advanced ceramics and traditional ceramics are the main categories of ceramic materials.
A ceramic is a non metallic solid material comprising an inorganic compound of metal non metal and metalloid atoms primarily hold in ionic or covalent bonds.
These different terms cover various specialised ceramic materials with unique mechanical electrical thermal and biochemical properties and property combinations.
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