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Far infrared interior wall painting

An interior wall coating and far-infrared technology, applied in the field of coatings, can solve problems such as low infrared emissivity, low adhesion, and harmful substances, and achieve the effects of promoting metabolism, promoting blood circulation, and increasing immunity

Inactive Publication Date: 2010-05-19
吴尚泉
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The far-infrared coatings are widely used in relatively mature fields such as the inner and outer layers of large-scale high-temperature furnaces. The purpose is to further activate the combustion and adsorption energy to achieve energy saving. Therefore, this type of far-infrared coating generally has harmful substances to the human body and cannot be used for residential interior coatings.
In recent years, it has been reported that far-infrared coatings used indoors are used for health care purposes. Although the harmful substances are reduced, due to the insufficient combination of raw materials, low adhesion, and low infrared emission rate at room temperature, the health care effect cannot be achieved. , making this product unavailable for promotion and use

Method used

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Examples

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Effect test

Embodiment

[0013] A kind of far-infrared interior wall paint of the present invention can be by the raw material combination mode of following multiple weight parts:

[0014] 1. Dispersant 15, thickener 8, defoamer 1.5, titanium dioxide 100, nano silicon dioxide 1, neutralizer 1.5, zinc oxide 1, soybean cellulose 1.5, kaolin 58.5, acrylic emulsion 150, film-forming agent 8. Titanium dioxide 2, silicon carbide 1, calcium carbonate 1, ethylene glycol 10, tourmaline 160, heavy calcium 340 and water 140.

[0015] 2. Dispersant 25, thickener 12, defoamer 2.5, titanium dioxide 110, nano silicon dioxide 2, neutralizer 2.5, zinc oxide 3, soybean cellulose 2.5, kaolin 60, acrylic emulsion 250, film-forming agent 12. Titanium dioxide 6, silicon carbide 2, calcium carbonate 3, ethylene glycol 30, tourmaline 180, heavy calcium 200 and water 100.

[0016] 3. Dispersant 20, thickener 10, defoamer 2, titanium dioxide 125, nano silicon dioxide 1, neutralizer 2, zinc oxide 2, soybean cellulose 2, kaolin...

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PUM

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Abstract

The invention discloses a far infrared interior wall painting, which comprises the following raw materials in part by weight: dispersant 15-25, thickener 8-12, defoamer 1.5-2.5, titanium oxide 100-150, nano silicon dioxide 1-3, neutralizer 1.5-2.5, zinc oxide 1-3, soybean cellulose 1.5-2.5, kaolin 40-60, polyacrylic emulsion 150-250, film-forming agent 8-12, titanium dioxide 2-6, silicon carbide 1-2, calcium carbonate 1-3, glycol 10-30, tourmaline 160-180, triple superphosphate 200-340 and water 100-140. The preparation method of the far infrared interior wall painting comprises the following steps: 1, putting the raw materials in a reaction kettle and stirring the raw materials till the raw materials are fully and uniformly mixed for later use; 2, crushing the tourmaline by nanometer for later use; and 3, putting the mixed raw materials obtained by the step 1 into the nanometer tourmaline raw material, adding water into the resulting mixture and stirring the resulting mixture by using a stirring machine to obtain the painting of the invention. The painting of the invention has a good health-care effect on human bodies and a bacteriostatic action, avoids generating mildews when applied on an interior wall and has good wall adhesive attraction and high stability.

Description

technical field [0001] The invention relates to a coating, which is a far-infrared interior wall coating used for the interior wall of a house. Background technique [0002] The far-infrared coatings are widely used in relatively mature fields such as the inner and outer layers of large-scale high-temperature furnaces. The purpose is to further activate the combustion and adsorption energy to achieve energy saving. Focus on emissivity and emissivity, so this class of far-infrared coatings generally has harmful substances to the human body and cannot be used for residential interior coatings. In recent years, it has been reported that far-infrared coatings used indoors are used for health care purposes. Although the harmful substances are reduced, due to the insufficient combination of raw materials, low adhesion, and low infrared emission rate at room temperature, the health care effect cannot be achieved. , resulting in the inability to promote the use of this product. C...

Claims

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Application Information

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IPC IPC(8): C09D133/00C09D5/00C09D5/14
Inventor 吴尚泉
Owner 吴尚泉
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