Sodium-based thermal insulation coating and preparation method thereof
A kind of thermal insulation coating and nano-based technology, applied in the field of thermal insulation materials, can solve the problems of non-waterproof, anti-corrosion, fire prevention, cold bridge heat loss at the joints of profiles, layered mortar on the surface, etc., to achieve high cost performance, stretch and tensile strength Strong ability and good heat preservation effect
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Embodiment 1
[0032] The nano-based thermal insulation coating of the present invention is made according to the following steps from the following components:
[0033] a. At 15-25°C, stir 10 parts of perlite, 10 parts of aluminosilicate fiber, 10 parts of wood fiber and 0.5 part of water into a paste;
[0034] b. Heat up to 20-28°C, add 2 parts of kaolin to the mixture in step a and stir quickly until it becomes a paste;
[0035] c. Let the mixture in step b stand for 2 to 5 hours, and at 15 to 25°C, add 5 parts of pearlescent sand, 5 parts of floating beads, 8 parts of brucite fiber and 0.3 part of water and stir until it becomes a paste;
[0036] d. Raise the temperature to 20-28°C, add 5 parts of bentonite to the mixture in step c, stir until it becomes a paste, and let it stand for 24-48 hours to obtain the finished coating.
[0037] The above-mentioned parts are parts by weight.
Embodiment 2
[0039] The nano-based thermal insulation coating of the present invention is made according to the following steps from the following components:
[0040] a. At 20°C, stir 35 parts of perlite, 30 parts of aluminosilicate fiber, 30 parts of wood fiber and 2 parts of water into a paste;
[0041] b. Heat up to 24°C, add 10 parts of kaolin to the mixture in step a and stir quickly until it becomes a paste;
[0042] c. Let the mixture in step b stand for 2 to 5 hours. At 21°C, add 20 parts of pearlescent sand, 15 parts of floating beads, 20 parts of brucite fiber and 1 part of water and stir until it becomes a paste;
[0043] d. Raise the temperature to 22°C, add 20 parts of bentonite to the mixture in step c, stir until it becomes a paste, and let it stand for 46 hours to obtain the finished paint.
[0044] The above-mentioned parts are parts by weight.
Embodiment 3
[0046] The nano-based thermal insulation coating of the present invention is made according to the following steps from the following components:
[0047] a. Under the condition of 21~23℃, stir 15 parts of perlite, 15 parts of aluminosilicate fiber, 15 parts of wood fiber and 1 part of water until it becomes a paste;
[0048] b. Heat up to 25°C, add 3 parts of kaolin to the mixture in step a and stir quickly until it becomes a paste;
[0049] c. Let the mixture in step b stand for 3 hours, and at 20°C, add 8 parts of pearlescent sand, 8 parts of floating beads, 10 parts of brucite fiber and 0.5 part of water and stir until it becomes a paste;
[0050] d. Raise the temperature to 23°C, add 8 parts of bentonite to the mixture in step c, stir until it becomes a paste, and let it stand for 36 hours to obtain the finished paint.
[0051] The above-mentioned parts are parts by weight.
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