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  2. Aluminium oxynitride - Wikipedia

    en.wikipedia.org/wiki/Aluminium_oxynitride

    Aluminium oxynitride (marketed under the name ALON by Surmet Corporation [3]) is a transparent ceramic composed of aluminium, oxygen and nitrogen. Aluminium oxynitride is optically transparent (≥80% for 2 mm thickness) in the near-ultraviolet , visible, and mid-wave- infrared regions of the electromagnetic spectrum.

  3. Porcelain tile - Wikipedia

    en.wikipedia.org/wiki/Porcelain_tile

    Porcelain tiles or ceramic tiles are either tiles made of porcelain, or relatively tough ceramic tiles made with a variety of materials and methods, that are suitable for use as floor tiles, or for walls. They have a low water absorption rate, generally less than 0.5 percent. The clay used to build porcelain tiles is generally denser than ...

  4. Porcelain - Wikipedia

    en.wikipedia.org/wiki/Porcelain

    Hard-paste porcelain was invented in China, and it was also used in Japanese porcelain.Most of the finest quality porcelain wares are made of this material. The earliest European porcelains were produced at the Meissen factory in the early 18th century; they were formed from a paste composed of kaolin and alabaster and fired at temperatures up to 1,400 °C (2,552 °F) in a wood-fired kiln ...

  5. Ceramic - Wikipedia

    en.wikipedia.org/wiki/Ceramic

    Ceramic material is an inorganic, metallic oxide, nitride, or carbide material. Some elements, such as carbon or silicon, may be considered ceramics. Ceramic materials are brittle, hard, strong in compression, and weak in shearing and tension. They withstand the chemical erosion that occurs in other materials subjected to acidic or caustic ...

  6. Mullite - Wikipedia

    en.wikipedia.org/wiki/Mullite

    The most important condition relates to ceramic chemical composition. If the silica and alumina ratio with low basic materials such as sodium and calcium is adjusted, the needle shape mullite forms at about 1400 °C and the needles will interlock. This mechanical interlocking contributes to the high mechanical strength of porcelain. [13] [14]

  7. Vitreous china - Wikipedia

    en.wikipedia.org/wiki/Vitreous_china

    In covering their porcelain substrate, vitreous china gives anti-corrosive properties and helps against weathering and heat. [5] Its non-porosity also prevents bacteria from entering the surface of ceramic material, and so keeps it from building up. Its porosity makes it absorb less than 0.5% of water. [12]

  8. Transparent ceramics - Wikipedia

    en.wikipedia.org/wiki/Transparent_ceramics

    The inherent advantages of glasses and glass-ceramics include having lower cost than most other ceramic materials, the ability to be produced in curved shapes, and the ability to be formed into large sheets. [56] Transparent crystalline ceramics are used to defeat advanced threats.

  9. Insulator (electricity) - Wikipedia

    en.wikipedia.org/wiki/Insulator_(electricity)

    Porcelain has a dielectric strength of about 4–10 kV/mm. [8] Glass has a higher dielectric strength, but it attracts condensation and the thick irregular shapes needed for insulators are difficult to cast without internal strains. [9] Some insulator manufacturers stopped making glass insulators in the late 1960s, switching to ceramic materials.

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