Refractory materials must be chemically and physically stable at high temperatures. Depending on the operating environment, they must be resistant to thermal shock, be chemically inert, and/or have specific ranges of thermal conductivity and of the coefficient of thermal expansion.

Refractories play a critical role in the daily operations of almost every sector of manufacturing. These ceramic materials are essential for all heat-intensive production processes. Without refractories, important industries and the products they produce would not exist.

n addition to high melting points, refractory metals also offer several additional benefits, such as high corrosion resistance, excellent heat conductivity and electrical conductivity, high hardness at room temperature, low thermal capacity and extreme resistance to deformation.

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