Ceramifiable silicon rubber composite belt
A silicone rubber and composite tape technology, applied in ceramics, conductors, insulated cables, etc., can solve the problems of brittleness, limited manufacturing length, hard and unbendable cables, etc., to achieve high strength, good flexibility, good electrical properties and The effect of mechanical strength
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example 1
[0015] Preparation of high-strength silicone compound
[0016] Weigh out 120 g of vinyl-terminated methyl vinyl silicone rubber with a vinyl content of 0.28% (mass) and a molecular weight of 700,000, and 265 g of methyl vinyl silicone rubber with a vinyl content of 0.06% (mass) and a molecular weight of 800,000. 215 g of methyl vinyl silicone rubber with a vinyl content of 0.50% (mass) and a molecular weight of 600,000, 30 g of hydrogen-containing silicone oil with a hydrogen content of 0.1% (mass) and a viscosity of 100 mPa·s, and 96 g of fumed silica in the kneader After kneading the dough, add 100g of gas phase white carbon in three times. After all the dough is mixed into a dough, the temperature is increased to 90°C and the kneading is continued for 2.5 hours, and then the temperature is increased to 150°C to vacuum (vacuum degree 0.08-0.09MPa). Mix for 0.5 hours, take out and cool naturally to obtain high-strength silicone rubber compound.
[0017] The high-strength silicon...
example 2
[0019] Preparation of composite ceramic powder
[0020] Weigh 412g of silicon carbide, 136g of alumina, 120g of zirconia, 70g of boron oxide, and 276g of nano-montmorillonite, place them in a high-speed mixer, stir for 0.5h, mix uniformly, and then grind in a ball mill for 1h to obtain composite ceramic powder.
example 3
[0022] Treatment of glass cloth
[0023] Weigh 110g of silicone-acrylic emulsion with a silicon content of 8% (mass) and a solid content of 45% (mass), dilute with 890g of water, and treat the glass cloth with the diluted silicone-acrylic emulsion by dipping, and then place it in a drying tunnel for 80 Bake at ℃ for 8min.
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