Equipment and method for preparing novel energy saving light wallboard
A lightweight wallboard, a new type of technology, applied in auxiliary molding equipment, manufacturing tools, ceramic molding cores, etc., can solve the problems of long construction period, easy falling off, waste of red bricks, etc., to achieve high compressive strength, acid and alkali resistance Good, high molding efficiency
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Embodiment 1
[0040] A method for preparing a new type of energy-saving lightweight wallboard, comprising the following components in parts by weight: 20 parts of magnesite cement, 35 parts of fly ash, 20 parts of talcum powder, 15 parts of aluminum tripolyphosphate, 4 parts of straw, glass fiber 0.5 parts, 20 parts of fluorocarbon coating, 60 parts of brine;
[0041] According to the specific gravity of the above-mentioned embodiment, the preparation method of novel energy-saving light-weight wallboard comprises the following steps:
[0042] (1) Weigh 20 parts of magnesite cement and 35 parts of fly ash according to the above weight ratio, and ball mill the above raw materials with a dry ball mill, the particle size is controlled at 50 mesh, and then add 4 parts of straw and 0.5 parts of glass fiber and mix well;
[0043] (2) Weigh 20 parts of talcum powder, 15 parts of aluminum tripolyphosphate, 20 parts of fluorocarbon coating, and 60 parts of brine according to the above weight ratio, a...
Embodiment 2
[0050] A method for preparing a new type of energy-saving lightweight wallboard, comprising the following components in parts by weight: 30 parts of magnesite cement, 40 parts of fly ash, 25 parts of talcum powder, 17 parts of aluminum tripolyphosphate, 7 parts of straw, glass fiber 0.8 parts, 25 parts of fluorocarbon coating, 75 parts of brine;
[0051] According to the specific gravity of the above-mentioned embodiment, the preparation method of novel energy-saving light-weight wallboard comprises the following steps:
[0052] (1) Weigh 30 parts of magnesite cement and 45 parts of fly ash according to the above weight ratio, ball mill the above raw materials with a dry ball mill, the particle size is controlled at 90 mesh, then add 7 parts of straw and 0.8 parts of glass fiber and mix well;
[0053] (2) Weigh 25 parts of talcum powder, 17 parts of aluminum tripolyphosphate, 25 parts of fluorocarbon coating, and 75 parts of brine according to the above weight ratio, and stir ...
Embodiment 3
[0059] Embodiment 3: A preparation method for preparing a new type of energy-saving lightweight wallboard, comprising the following components in parts by weight, 40 parts of magnesite cement, 50 parts of fly ash, 30 parts of talcum powder, 20 parts of aluminum tripolyphosphate, and 9 parts of straw 1 part, 1 part of glass fiber, 30 parts of fluorocarbon coating, 90 parts of brine;
[0060] According to the specific gravity of the above-mentioned embodiment, the preparation method of novel energy-saving light-weight wallboard comprises the following steps:
[0061] (1) Weigh 40 parts of magnesite cement and 50 parts of fly ash according to the above weight ratio, and ball mill the above raw materials with a dry ball mill to control the particle size to 120 mesh, then add 9 parts of straw and 1 part of glass fiber and mix well;
[0062] (2) Weigh 30 parts of talcum powder, 20 parts of aluminum tripolyphosphate, 30 parts of fluorocarbon coating, and 120 parts of brine according ...
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