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Camouflage cooling coating material

A coating material and camouflage technology, applied in the direction of coatings, multi-color effect coatings, epoxy resin coatings, etc., can solve the problems of heat insulation and cooling effects that cannot meet the requirements, destroy the stealth effect, and low reflectivity, and achieve good mechanical properties. Properties and Effects of Physicochemical Properties

Active Publication Date: 2013-07-03
青岛乐化科技有限公司 +3
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, many people at home and abroad have done some research and development on thermal insulation and cooling coatings for industrial oil tanks, pipeline equipment, warehouses, workshops, and residential buildings, but they are limited to white or light-colored coating materials, while dark-colored coatings The material requires more dark pigments and black pigments during preparation. The dark pigments currently used, especially black pigments, strongly absorb heat energy under sunlight, and the reflectivity is very low, so that the temperature of the object rises quickly. High, the existing dark-colored coating materials are far from meeting the requirements of solar heat reflection, radiation, heat insulation and cooling effects, especially the three-color or four-color cooling coating materials in dark camouflage, not only require cooling Effect, the stealth effect cannot be destroyed due to reflection or radiation, and it must also have good mechanical properties and physical and chemical properties such as scratch resistance and impact resistance. It is different from static oil tanks or warehouses, factories, and residences. Meet dynamic requirements

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] A surface coating of a camel gray color cooling coating material, the parts by weight of its components are as follows: polymer acrylic resin liquid, 50; dispersant, 0.7; auxiliary dispersant, 0.2; Bayer iron red, 0.5; rutile type Titanium dioxide, 6.3; Iron-chrome black, 2; Ni-Sb-Ti yellow, 5.5; Bentonite, 0.2; Dibutyl phthalate, 5.6; Leveling agent, 0.2; Defoamer, 0.2; Dimethyl carbonate , 6; sec-butyl acetate, 8.3; wax-treated ultrafine SIO 2 , 5.3; 2500 mesh ceramic beads, 7.5; polytetrafluoroethylene wax, 1.5. It is prepared according to the above formula and following the existing paint compounding process. The iron-chrome black and titanium-nickel yellow pigments are all metal oxides with spectral selectivity and photocatalyst semiconductor performance. After calcining and reaction, metal ions and oxygen ions in the metal oxide are rearranged into a shape similar to spinel type or A metal oxide with a stable rutile structure.

Embodiment 2

[0018] A surface coating of a dark green color cooling coating material, the parts by weight of each component are as follows: polymer acrylic resin liquid, 54; dispersant, 0.6; auxiliary dispersant, 0.2; phthalocyanine green, 0.7; iron-chromium Black, 4.0; Ni-Sb-Ti yellow, 2.2; bentonite, 0.2; dibutyl phthalate, 6.0; leveling agent, 0.2; defoamer, 0.2; dimethyl carbonate, 8; sec-butyl acetate, 10.4; Wax treated ultrafine SIO 2 , 6.3; 2500 mesh ceramic beads, 5.5; polytetrafluoroethylene wax, 1.5. It is prepared according to the above formula and following the existing paint compounding process. The iron-chrome black and titanium-nickel yellow pigments are all metal oxides with spectral selectivity and photocatalyst semiconductor performance. After calcining and reaction, metal ions and oxygen ions in the metal oxide are rearranged into a shape similar to spinel type or A metal oxide with a stable rutile structure.

Embodiment 3

[0020] A military green color cooling coating material, the parts by weight of the components of the surface coating are as follows: polymer acrylic resin liquid, 53; dispersant, 0.7; auxiliary dispersant, 0.2; phthalocyanine green, 0.5; rutile type Titanium dioxide, 0.5; Iron-chrome black, 2.3; Ni-Sb-Ti yellow, 8.1; Bentonite, 0.2; Dibutyl phthalate, 6.0; Leveling agent, 0.2; Defoamer, 0.2; Dimethyl carbonate , 6; sec-butyl acetate, 7.7; wax-treated ultrafine SIO 2 , 5.4; 2500 mesh ceramic beads, 7.5; polytetrafluoroethylene wax, 1.5. It is prepared according to the above formula and following the existing paint compounding process. The iron-chrome black and titanium-nickel yellow pigments are all metal oxides with spectral selectivity and photocatalyst semiconductor performance. After calcining and reaction, metal ions and oxygen ions in the metal oxide are rearranged into a shape similar to spinel type or A metal oxide with a stable rutile structure.

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PUM

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Abstract

The invention discloses a camouflage cooling coating material which is characterized by comprising camel, army green and blackish green cooling coating materials, wherein the army green cooling coating material also comprises a surface coating and a bottom coating. The camouflage cooling coating material can achieve a cooling effect and is good in mechanical and physicochemical performances of scratch resistance, impact resistance and the like, and the hiding effect cannot be destroyed due to reflection or radiation.

Description

technical field [0001] The invention relates to a camouflage cooling coating material, in particular to a color dark camouflage three-color or four-color coating material prepared with functional pigments and fillers composed of spectrally selective materials, thermal barrier materials and photocatalyst semiconductor materials , belongs to the technical field of new chemical materials. Background technique [0002] At present, many people at home and abroad have done some research and development on thermal insulation and cooling coatings for industrial oil tanks, pipeline equipment, warehouses, workshops, and residential buildings, but they are limited to white or light-colored coating materials, while dark-colored coatings The material requires more dark pigments and black pigments during preparation. The dark pigments currently used, especially black pigments, strongly absorb heat energy under sunlight, and the reflectivity is very low, so that the temperature of the obje...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D133/00C09D163/00C09D7/12C09D5/29
Inventor 沈孝业王兆安高佃山
Owner 青岛乐化科技有限公司
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