JHG fire-resistant glass is combined with borosilicate glass and float glass technology, which fire resistant properties much superior to those of sode lime glass , the main character is : * high performance to bear high temperature , our tempered borosilicate glass 4.0 can withstand 120 minutes fire test . * Ultra light ,borostilicate glass 8% less than sode lime glass * Hign soften point in fire * High ligh transmission * No SO2 pollution ,no self-explosion Borosilicate 4.0 Technical data : Size: 1830*3000mm Density (g/cm�?�³) : 2.28�?�±0.1 Co-efficient of expansion (�?�±)(20-300�¢??) : 4.0�?�±0.1�??10-6k-1 Softening point(�¢??) : 845�?�±10 Light transmission :�?� �¢?�¥90(6mm) Main usage : 4.0 building partition ,facade ,door ,ceiling ,floor 3.3 household application ,optics , lighting
Ceramic tiles are durable and versatile, made from natural clay and fired at high temperatures to create a hard, stain-resistant surface. Available in a variety of designs and colors, they are ideal for floors, walls, and countertops. Easy to clean and maintain, ceramic tiles are a practical and environmentally friendly choice for residential and commercial spaces.
Ceramic Fiber product is made from long flexible bulk fiber which is a high temperature fire resistance material containing of pure alumina, silica & zirconia. It is used for various applications some of are reformer of furnace, tube seal, gasket & expansion joint, high temperature pipe, duct, turbine insulations, kiln car insulations & seals, boiler insulation and many more insulation purposes.
Porcelain Enamel Porcelain enamel is a form of glass bonded to metal at high temperature. Porcelain enamel is quite simply the highest quality, most durable and sanitary finish available for metallic surfaces. Porcelain enamel is an ancient art which has survived and been transformed in modern times into a unique protective and decorative coating for metals. Porcelain enamel begins as a blend of raw materials smelted in much the same way as common glass. During this process (known as "fritting"), the hot, molten mixture is poured from a smelter and water-quenched and then dried. Frit is applied to metal either a wet or dry method and fired at very high temperatures - generally ranging from 760 to 880 degrees Centigrade. While in the furnace, the frits melting bond with the metal to create more than a coating.
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