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Epoxy is the family of basic components or cured end products of epoxy resins. Epoxy resins, also known as polyepoxides, are a class of reactive prepolymers and polymers which contain epoxide groups. The epoxide functional group is also collectively called epoxy. [1] The IUPAC name for an epoxide group is an oxirane.
In the Han dynasty, pots unglazed on the exterior known as fus (now called sandy pots) were used for wet clay cooking. [1] In Japan clay pots are mentioned from the 8th century and originally referred to as nabe. As pots made from other materials entered use, the Japanese clay pots were distinguished by calling them donabe; do means clay or ...
They are typically used for braising, searing, shallow frying and general cooking. [9] Bread pan – also called a loaf pan, a pan specifically designed for baking bread. [10] [11] Caquelon – a cooking vessel of stoneware, ceramic, enamelled cast iron, or porcelain for the preparation of fondue, also called a fondue pot. [12]
Such pots are much lighter than most other pots of similar size, are cheaper to make than stainless steel pots, and do not have the rust and reactivity issues of cast iron or carbon steel. [ citation needed ] Enamel over steel is ideal for large stockpots and for other large pans used mostly for water-based cooking.
In pottery these are used to produce plastic clay body from a slip. Invariably the output from a press, called filter cakes, are then fed into pugs for de-airing and extrusion. Fine Fireclay A semi-vitreous ceramic used for very large pieces of sanitaryware. Despite the name most formulations do not use fireclay, but all use some chamotte.
Cast iron, carbon steel, [1] stainless steel [2] and cast aluminium cookware [citation needed] may be seasoned before cooking by applying a fat to the surface and heating it to polymerize it. This produces a dry, hard, smooth, hydrophobic coating, which is non-stick when food is cooked with a small amount of cooking oil or fat.
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Epoxy resins can be categorized into three distinct types based on the chemical structure of their resin backbone: aliphatic, cycloaliphatic, and aromatic epoxy resins. [4] An increase in the molecular length between reactive epoxy groups results in a reduction of crosslink density and resin modulus, while simultaneously enhancing the failure ...