Customization: | Available |
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Customized: | Customized |
Application: | Metallurgy, Pharmacy, Chemical, Petroleum, Mining |
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silicon carbide plate,sic ceramic |
SiSiC Cyclone Liner Reaction Bonded Silicon carbide Ceramic in in corase particles classification industry.
SiSiC lining, is a kind of new wear-resistant material, the lining material with high hardness, abrasion resistance and impact resistance, high temperature resistance, acid and alkali resistance, corrosion resistance and other characteristics, the actual service life is 6 times more than polyurethane .Especially suitable for highly abrasive, coarse particles in the classification, concentration, dehydration and other operations and it has been successfully applied in many mines.
REACTION BONDED SILICON CARBIDE
Reaction Bonded Silicon Carbide (RBSC, or SiSiC) has excellent wear, impact, and chemical resistance. The strength of RBSC is almost 50% greater than that of most nitride bonded silicon carbides. It can be formed into a variety of shapes, including cone and sleeve shapes, as well as more complex engineered pieces designed for equipment involved in the processing of raw materials.
ADVANTAGES OF REACTION BONDED SILICON CARBIDE
Pinnacle of large scale abrasion resistant ceramic technology
Designed for use in applications for large shapes where refractory grades of silicon carbide are exhibiting abrasive wear or damage from impact of large particles
Resistant to direct impingement of light particles as well as impact and sliding abrasion of heavy solids containing slurries
MARKETS FOR REACTION BONDED SILICON CARBIDE
-Mining
-Power Generation
-Chemical
-Petrochemical
Features:
Physical characters | Unit | Properties |
SIC content | % | 95-88 |
Free Si | % | 5~12 |
Bulk density | g/cm3 | >3.02 |
Porosity | % | <0.1 |
Hardness | Kg/mm2 | 2400 |
Coefficient of bending strength at 20 degrees Celsius | Mpa | 260 |
Coefficient of bending strength at 1200 degrees Celsius | Mpa | 280 |
Modulus of elasticity at 20 Degrees Celsius | Gpa | 330 |
Fracture toughness | Mpa*m1/2 | 3.3 |
Coefficient of thermal conductivity at 1200 degrees Celsius | W/m.k |
45 |
Coefficient of thermal expansion at 1200 degrees Celsius | 10-6mm/mmK |
4.5 |
Coefficient of heat radiation | <0.9 | |
Max. Working temperature | ºC | <1380 |