A kind of thermal insulation building material and preparation method thereof
A technology for thermal insulation and building materials, applied in the field of building materials, can solve the problems of poor thermal insulation and thermal insulation, waste of energy, ineffective thermal insulation and thermal insulation, etc., and achieve high thermal insulation and thermal insulation, good thermal insulation effect. Effect
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Embodiment 1
[0022] (1) Take 18 parts by weight of calcium silicate powder, 12 parts of granite powder, 17 parts of polyurethane, 22 parts of aluminum silicate powder, 8 parts of magnesium oxide, 11 parts of mineral wool, and 6 parts of polyester fiber part, stir each of the above-mentioned ingredients in a mixing tank, and stir them evenly for subsequent use;
[0023] (2) Inject the homogeneously mixed composite material prepared in step (1) into a molding die, and pressurize it;
[0024] (3) The composite building material formed under pressure in step (2) is dried again at a drying temperature of 75° C. and a drying time of 3 hours. After drying, a heat-insulating building material is prepared.
Embodiment 2
[0026] (1) Take 14 parts by weight of calcium silicate powder, 17 parts of granite powder, 19 parts of polyurethane, 17 parts of aluminum silicate powder, 11 parts of magnesium oxide, 7 parts of mineral wool, and 4 parts of polyester fiber part, stir each of the above-mentioned ingredients in a mixing tank, and stir them evenly for subsequent use;
[0027] (2) Inject the homogeneously mixed composite material prepared in step (1) into a molding die, and pressurize it;
[0028] (3) The composite building material formed under pressure in step (2) is dried again at a drying temperature of 75° C. and a drying time of 3 hours. After drying, a heat-insulating building material is prepared.
Embodiment 3
[0030] (1) Take 21 parts by weight of calcium silicate powder, 8 parts of granite powder, 15 parts of polyurethane, 25 parts of aluminum silicate powder, 5 parts of magnesium oxide, 13 parts of mineral wool, and 9 parts of polyester fiber part, stir each of the above-mentioned ingredients in a mixing tank, and stir them evenly for subsequent use;
[0031] (2) Inject the homogeneously mixed composite material prepared in step (1) into a molding die, and pressurize it;
[0032] (3) The composite building material formed under pressure in step (2) is dried again at a drying temperature of 75° C. and a drying time of 3 hours. After drying, a heat-insulating building material is prepared.
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