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Novel energy-storage luminous emulsion paint

An energy storage luminescence, latex paint technology, applied in the field of paint and paint, can solve the problems of increasing the luminous time, limiting the scope of use, short luminous time, etc., and achieves the effects of long afterglow time, good curing performance, and safe and convenient construction.

Inactive Publication Date: 2012-11-21
QIQIHAR DASONG BUILDING WATERPROOF PAINT MFG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The luminescence time of the existing luminescent materials is only a few hours. In order to increase the luminescence time, some radioactive substances have to be added to the formula, but this limits its application range

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0014] A novel energy-storage luminous latex paint of the present invention is composed of two components A and B: a, by weight, 170-240 parts of water, 1-5 parts of hydroxyethyl cellulose, 1-10 parts of dispersant, 1-7 parts of defoamer, 0.5-4 parts of wetting agent, 0.5-4 parts of ammonia water, 1-4 parts of fungicide, 12-24 parts of film-forming aid, 17-40 parts of ethylene glycol, 80 parts of rutile titanium dioxide ~160 parts, 120-200 parts of luminescent powder, 30-80 parts of sericite powder, 30-70 parts of wollastonite powder, 350-450 parts of epoxy resin emulsion and 2-10 parts of thickener; b, by weight The number of parts is prepared by mixing 60-100 parts of water-based polyamide curing agent and 15-30 parts of deionized water; c, mixing the mixed solution of step a with the mixed solution of step b in a weight ratio of 6-9: 0.8-1.5, namely finished product.

Embodiment 2

[0016] A novel energy-storage luminescent latex paint of the present invention is composed of two components A and B: a, by weight, 180-230 parts of water, 1-4 parts of hydroxyethyl cellulose, 2-8 parts of dispersant, 1-5 parts of defoaming agent, 0.5-3 parts of wetting agent, 0.5-3 parts of ammonia water, 1-2 parts of fungicide, 13-23 parts of film-forming aid, 20-35 parts of ethylene glycol, 90 parts of rutile titanium dioxide ~140 parts, 120-180 parts of luminous powder, 35-70 parts of sericite powder, 40-65 parts of wollastonite powder and 380-450 parts of epoxy resin emulsion, 2-8 parts of thickener; b. Parts by weight: Prepare 60-100 parts of water-based polyamide curing agent and 15-30 parts of deionized water; c. Mix the mixed solution of step a and step b at a weight ratio of 6-8: 0.8-1.4 to prepare.

Embodiment 3

[0018] A novel energy-storage luminescent latex paint of the present invention is composed of two components A and B: a, by weight, 200 parts of water, 2 parts of hydroxyethyl cellulose, 5 parts of dispersant, 4 parts of defoamer, 2 parts of wetting agent, 2 parts of ammonia water, 2 parts of bactericide, 20 parts of film-forming aid, 25 parts of ethylene glycol, 110 parts of rutile titanium dioxide, 150 parts of luminous powder, 50 parts of sericite powder, 50 parts of wollastonite powder It is mixed with 400 parts of epoxy resin emulsion and 5 parts of thickener; b, 80 parts of water-based polyamide curing agent and 20 parts of deionized water are made in parts by weight; c, the mixed solution of step a is mixed with step b The mixed solution is mixed and prepared in a weight ratio of 7: 1.

[0019] The preferred material sources or specifications of the present invention: water (without ions), hydroxyethyl cellulose (HBR-250), dispersant (5040), defoamer (F-50), wetting age...

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PUM

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Abstract

The invention relates to the field of paints and coatings, in particular to novel energy-storage luminous emulsion paint comprising a component A and a component B. The component A is prepared by mixing water, hydroxyethyl cellulose dispersing agents, defoamers, wetting agents, ammonia water, fungicide, coalescing agents, ethylene glycol, rutile titanium powder, luminescent powder, sericite powder, wollastonite powder, epoxy resin emulsion and thickening agents by mass parts. The component B is prepared by mixing water-based polyamide curing agents and deionized water by mass parts. The component A and the component B are mixed and prepared according to a weight ratio. The water-based epoxy resin emulsion is used as a base of the novel energy-storage luminous emulsion paint, so that the novel energy-storage luminous emulsion paint is nontoxic and incombustible and is safe and convenient to use. As the paint film has good curing performance, high luminous intensity with afterglow lasting for over 12 hours and zero radioactivity, the paint is environment-friendly energy-storage luminous paint. Since the energy-storage luminous powder subjected to treatments of coating has good hydrolytic stability, the water-based luminous paint is stable in preservation.

Description

technical field [0001] The invention relates to the field of paints and coatings, in particular to a novel energy storage luminescent latex paint. Background technique [0002] At present, when the power is off in the building, emergency lights made of luminescent paint materials are used in dark corridors and stairs, so that people can quickly pass through the corridors and stairs. There are also researches and applications of similar materials all over the world, especially in luminescent materials. In terms of raw material formula, synthesis process and impact on the environment. The luminescence time of the existing luminescent materials is only a few hours. In order to increase the luminescence time, some radioactive substances have to be added to the formula, but this limits its application range. Contents of the invention [0003] The invention aims at the deficiencies in the background technology, and provides a novel energy-storing luminescent latex paint. [00...

Claims

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Application Information

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IPC IPC(8): C09D163/00C09D5/22C09D5/02C09C1/40C09C3/10C09K11/64C09K11/02
Inventor 金德日沈兰安刘丽颖宋宇博
Owner QIQIHAR DASONG BUILDING WATERPROOF PAINT MFG
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