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Ultra-wide wave infrared thermal insulation coating

A thermal insulation, infrared technology, applied in the direction of reflection/signal paint, coating, passive houses, etc., to achieve the effect of strong infrared reflection ability

Active Publication Date: 2022-07-05
米格(浙江)创新科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In view of the above situation, relying solely on conduction and heat insulation to save energy is not completely suitable for the actual situation in China.

Method used

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  • Ultra-wide wave infrared thermal insulation coating

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0011] An ultra-wide wave infrared thermal insulation coating, comprising the following components by weight:

[0012] 100 parts of acrylic resin, 3 parts of polycopper carbosilane, 3 parts of infrared reflector, 5 parts of curing agent, 2 parts of auxiliary agent, 0.5 part of curing accelerator, and 10 parts of solvent;

[0013] The infrared reflector is formed by mixing amorphous selenium powder, hematite powder and light red silver ore powder in a ratio of 0.5:3:1, and the particle size of the three is 5 μm; the curing agent is isocyanate; The agent is prepared by mixing a defoaming agent, a thickening agent, a binding agent and a dispersing agent in equal mass proportions; the curing accelerator is an organic tin curing accelerator; and the solvent is propylene glycol methyl ether acetate.

Embodiment 2

[0015] An ultra-wide wave infrared thermal insulation coating, comprising the following components by weight:

[0016] 110 parts of acrylic resin, 5 parts of polycopper carbosilane, 5 parts of infrared reflector, 10 parts of curing agent, 6 parts of auxiliary agent, 1 part of curing accelerator, and 20 parts of solvent;

[0017] The infrared reflector is formed by mixing amorphous selenium powder, hematite powder and light red silver ore powder in a ratio of 0.75:4:2, and the particle size of the three is 25 μm; the curing agent is a block isocyanate; The auxiliary agent is formed by mixing a defoamer, a thickening agent, a binding agent and a dispersing agent in equal mass proportions; the curing accelerator is an organic tin curing accelerator; and the solvent is xylene.

Embodiment 3

[0019] An ultra-wide wave infrared thermal insulation coating, comprising the following components by weight:

[0020] 120 parts of acrylic resin, 7 parts of polycopper carbosilane, 7 parts of infrared reflector, 15 parts of curing agent, 10 parts of auxiliary agent, 1.5 parts of curing accelerator, and 30 parts of solvent;

[0021] The infrared reflector is formed by mixing amorphous selenium powder, hematite powder and light red silver ore powder in a ratio of 1.5:5:3, and the particle size of the three is 50 μm; the curing agent is melamine; The agent is prepared by mixing a defoaming agent, a thickening agent, a binding agent and a dispersing agent in equal mass proportions; the curing accelerator is an organic tin curing accelerator; and the solvent is butanone.

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Abstract

The invention provides a technology-based ultra-wide wave infrared thermal insulation coating, comprising the following components: acrylic resin, polycopper carbosilane, infrared reflector, curing agent, auxiliary agent, curing accelerator and solvent. Polycopper carbosilane has a relatively complete crystal structure, so it has strong infrared reflection ability; the infrared reflector is made of a mixture of amorphous selenium powder, hematite powder and reddish silver mineral powder with a certain particle size with high refractive index. This component is the sum of the three infrared reflection bands, and has ultra-wide wavelength infrared reflection properties, which enables the coating to achieve excellent thermal insulation effects.

Description

technical field [0001] The invention relates to the technical field of coatings, in particular to ultra-wide wave infrared thermal insulation coatings. Background technique [0002] Building envelope energy saving has been applied for a long time. The main method is to paste materials with small heat transfer coefficient and large thickness, commonly known as "wearing a cotton jacket", which is the heat conduction and heat insulation method. . This energy-saving method of conduction heat insulation, material testing and thermal calculation is very popular. But in practice, it is found that the problem is huge, the visible fire and falling off, and the invisible problem is more serious. China is a vast country, with huge differences in climate between the north and the south, and the four distinct seasons. A single "padded jacket" is no problem in winter, but there is a big problem in summer. Not only does it not save energy, but it consumes energy. The reason is very simp...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09D5/33C09D133/00C09D7/65
CPCC09D5/004C09D133/00C09D7/65C08K2003/0806C08K2003/2272C08L83/16C08K3/02C08K3/08C08K3/22Y02B30/90
Inventor 王其能
Owner 米格(浙江)创新科技有限公司
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