Far-infrared high-temperature anti-abrasion energy-saving coating and preparation method thereof
A high-temperature wear-resistant and energy-saving coating technology, applied in the field of refractory materials and their preparation, can solve the problems affecting the normal operation of circulating fluidized bed boilers and high operating costs, and achieve good thermal insulation, high compressive strength, and high Mohs hardness. Effect
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Embodiment 1
[0019] The far-infrared high-temperature wear-resistant energy-saving coating is composed of main materials and auxiliary materials, and the weight ratio of the main materials and auxiliary materials is 65:23; the main materials and auxiliary materials are respectively composed of the following raw materials in parts by weight:
[0020] Main ingredients, 19 parts of zirconium corundum fine powder with a particle size of 1-2.5 mm; 27 parts of zirconium corundum fine powder with a particle size of 0.5-1 mm; 7 parts of titanium oxide powder with a particle size of 0.072-0.093 mm; 10 parts of zirconia; pure aluminum 9 parts of calcium acid cement; 8 parts of yttrium oxide; 6 parts of high-purity sintered magnesia-zirconium sand; 9 parts of silicon micropowder; 5 parts of alumina micropowder; 0.3 part of sodium triphosphate; 1 part of silicon nitride; 5.8 parts of hydrotalcite; The silica powder is fused silica powder with silicon content ≥ 98%. The content of magnesium oxide in hig...
Embodiment 2
[0028] The far-infrared high-temperature wear-resistant energy-saving coating is composed of main materials and auxiliary materials, and the weight ratio of the main materials and auxiliary materials is 70:10; the main materials and auxiliary materials are respectively composed of the following raw materials in parts by weight:
[0029] Main ingredients, 23 parts of zirconium corundum fine powder with a particle size of 1-2.5 mm; 23 parts of zirconium corundum fine powder with a particle size of 0.5-1 mm; 16 parts of titanium oxide powder with a particle size of 0.072-0.093 mm; 16 parts of zirconia; pure aluminum 7 parts of calcium acid cement; 4 parts of yttrium oxide; 10 parts of high-purity sintered magnesia-zircon sand; 5 parts of silicon micropowder; 3 parts of alumina micropowder; 0.5 part of sodium triphosphate; 2.3 parts of silicon nitride; The silica powder is fused silica powder with silicon content ≥ 98%. The content of magnesium oxide in high-purity sintered magnesi...
Embodiment 3
[0037] The far-infrared high-temperature wear-resistant and energy-saving coating is composed of main materials and auxiliary materials, and the weight ratio of the main materials and auxiliary materials is 81:20; the main materials and auxiliary materials are respectively composed of the following raw materials in parts by weight:
[0038] Main ingredients, 15 parts of zirconium corundum fine powder with a particle size of 1-2.5 mm; 20 parts of zirconium corundum fine powder with a particle size of 0.5-1 mm; 10 parts of titanium oxide powder with a particle size of 0.072-0.093 mm; 9 parts of zirconia; pure aluminum 5 parts of calcium acid cement; 2 parts of yttrium oxide; 5 parts of high-purity sintered magnesia-zircon sand; 7 parts of silicon micropowder; 7 parts of alumina micropowder; 0.7 part of sodium triphosphate; 1.5 parts of silicon nitride; The silica powder is fused silica powder with silicon content ≥ 98%. The content of magnesium oxide in high-purity sintered magne...
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