Heat preserving and insulating coating material
A technology of thermal insulation and coating, applied in the direction of coating, can solve problems such as poor thermal insulation performance, and achieve the effects of improving thermal insulation function, good leveling, and good thermal insulation effect.
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Embodiment 1
[0015] Example 1 of the present invention provides a thermal insulation coating, which is composed of the following components in parts by weight: 18 parts of styrene-acrylic emulsion, 21 parts of lime powder, 5.7 parts of sodium polycarboxylate, 6.7 parts of thickener, and sulfuric acid 2.5 parts of barium, 10.5 parts of borax, 8.75 parts of yttrium oxide, 5.75 parts of propylene glycol.
[0016] The thermal conductivity of the paint film formed by the paint provided in Example 1 when the temperature is not higher than 350° C. is lower than 0.12 W / (m·K).
Embodiment 2
[0018] Example 2 of the present invention provides a thermal insulation coating, which is composed of the following components in parts by weight: 20 parts of styrene-acrylic emulsion, 22 lime powder, 6.5 parts of sodium polycarboxylate, 7.5 parts of thickener, and sulfuric acid 3 parts of barium, 11 parts of borax, 7.5 parts of yttrium oxide, 6.5 parts of propylene glycol.
[0019] The thermal conductivity of the paint film formed by the paint provided in Example 2 when the temperature is not higher than 350° C. is lower than 0.05 W / (m·K).
Embodiment 3
[0021] Example 2 of the present invention provides a thermal insulation coating, which is composed of the following components in parts by weight: 17 parts of styrene-acrylic emulsion, 24 lime powder, 5 parts of sodium polycarboxylate, 6 parts of thickener, and sulfuric acid 2 parts of barium, 11 parts of borax, 5 parts of yttrium oxide, 7 parts of propylene glycol.
[0022] The thermal conductivity of the paint film formed by the paint provided in Example 3 when the temperature is not higher than 350° C. is lower than 0.12 W / (m·K).
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Abstract
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