High-heat conductivity and wear-resistant composite material
A composite material and high thermal conductivity technology, which is applied in the field of refractory materials for circulating fluidized bed boilers, can solve the problem of insufficient erosion resistance and thermal shock stability, affecting the safe operation of circulating fluidized bed boilers, and the construction of circulating fluidized bed boilers. It can improve the strength and thermal conductivity, prolong the operation period of the boiler, and reduce the energy consumption of the boiler operation.
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Embodiment 1
[0017] Embodiment 1: High thermal conductivity and wear-resistant composite material, composed of main materials and auxiliary materials, the weight ratio of main materials and auxiliary materials is 71:29, and the main materials and auxiliary materials are respectively composed of the following raw materials in parts by weight:
[0018] Main ingredients, 18 parts of zirconium corundum fine powder with a particle size of 1-2.5 mm; 25 parts of silicon carbide fine powder with a particle size of 0.5 mm-1 mm; 6.7 parts of zirconia fine powder with a particle size of 0.072-0.093 mm; nano-aluminum nitride 10 parts 9 parts of pure calcium aluminate cement; 8 parts of carbon fiber; 4 parts of magnesia-zirconium sand; 9 parts of silicon micropowder; 5 parts of alumina micropowder; 0.3 part of sodium triphosphate; 1 part of calcium chromate; The silica powder is fused silica powder with a silicon content ≥ 98%, and the magnesium oxide content in the magnesia-zircon sand is 92%.
[0019...
Embodiment 2
[0029] The high thermal conductivity and wear-resistant composite material is composed of main materials and auxiliary materials. The weight ratio of main materials and auxiliary materials is 85:15. The main materials and auxiliary materials are composed of the following raw materials in parts by weight:
[0030] Main ingredients, 21 parts of zirconium corundum fine powder with a particle size of 1-2.5 mm; 20 parts of silicon carbide fine powder with a particle size of 0.5-1 mm; 15 parts of zirconia fine powder with a particle size of 0.072-0.093 mm; 14 parts of nano-aluminum nitride 6.2 parts of pure calcium aluminate cement; 4 parts of carbon fiber; 7 parts of magnesia-zirconium sand; 5 parts of silicon micropowder; 3 parts of alumina micropowder; The silica powder is fused silica powder with a silicon content ≥ 98%, and the magnesium oxide content in the magnesia-zircon sand is 92%.
[0031] Auxiliary materials, 73.8 parts of phosphoric acid with a mass percentage concentra...
Embodiment 3
[0041] The high thermal conductivity and wear-resistant composite material is composed of main materials and auxiliary materials. The weight ratio of main materials and auxiliary materials is 79:21. The main materials and auxiliary materials are composed of the following raw materials in parts by weight:
[0042] Main ingredients, 19 parts of zirconium corundum fine powder with a particle size of 1-2.5 mm; 21 parts of silicon carbide fine powder with a particle size of 0.5-1 mm; 18 parts of zirconia fine powder with a particle size of 0.072-0.093 mm; 9 parts of nano-aluminum nitride 5 parts of pure calcium aluminate cement; 4 parts of carbon fiber; 5 parts of magnesia-zircon sand; 7 parts of silicon micropowder; 7 parts of alumina micropowder; The silica powder is fused silica powder with a silicon content ≥ 98%, and the magnesium oxide content in the magnesia-zircon sand is 92%.
[0043] Auxiliary materials, 75.3 parts of phosphoric acid with a mass percentage concentration o...
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