Thin multifunctional solar reflecting coating and preparation method thereof

A multi-functional coating and multi-functional technology, applied in the direction of reflection/signal coatings, coatings, anti-corrosion coatings, etc., can solve the problems of difficult construction, reduced surface flatness, long construction period, etc., and achieve excellent substrate adhesion , Excellent outdoor durability, and the effect of facilitating large-scale construction

Active Publication Date: 2012-11-21
AEROSPACE RES INST OF MATERIAL & PROCESSING TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] At present, most of the solar heat reflective coatings at home and abroad are reflective and heat-insulating. After the coating increases the heat-insulating effect, it also greatly increases the thickness of the coating. Generally, it is more than 3mm and needs to be painted many times. The construction is difficult. The efficiency is low, and the cost is high, and the coating is generally added with functional filler balls with heat insulation effect, the surface flatness is reduced, the anti-fouling performance is poor, and the application cycle is greatly shortened
Although thin solar heat reflective coatings have been reported, they have low solid content, and more organic solvents volatilize during the construction process, causing serious pollution to personnel and the environment.
In addition, the reported solar heat reflective coatings are generally only used as top coats and / or middle layers, and their own anti-corrosion performance is low. Additional primers must be applied and painted multiple times. The construction period is long, and the flatness of the coating is reduced. There are problems matching the primer
In short, there have been no relevant reports on thin solar heat reflective coatings that integrate heat reflection cooling, anti-corrosion, weather resistance, high solid content, integrated bottom surface, and convenient construction.

Method used

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  • Thin multifunctional solar reflecting coating and preparation method thereof
  • Thin multifunctional solar reflecting coating and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0037] Coating formula (mass parts):

[0038] Titanium dioxide: 28

[0039] Talc: 1

[0040] Organic bentonite: 1

[0041] Aluminum tripolyphosphate: 2

[0042] Wetting and dispersing additive: 0.5

[0043] Acrylic resin and curing agent: 25

[0044] Solvent (xylene: ethyl acetate: propylene glycol methyl ether acetate = 4: 4: 1): 15

[0045] Coating preparation process such as figure 1 Shown:

[0046] Weigh the mixed solvent according to the proportion, add wetting and dispersing aids, organic bentonite, titanium dioxide, aluminum tripolyphosphate and talcum powder filler and 1 / 2 resin in sequence while dispersing at high speed, and use sand mill after high-speed dispersion Machine grinding for 3 to 4 times until the slurry fineness is ≤40μm; add the remaining 1 / 2 resin in proportion to the ground slurry, and disperse evenly at high speed; then filter the slurry with a 100-mesh fine gauze to obtain the coating Component A: Dispense the coating component A and curing a...

Embodiment 2

[0050] Aluminum oxide: 2

[0051] Titanium dioxide: 28

[0052] Talc: 1

[0053] Organic bentonite: 1

[0054] Zinc phosphate: 2.5

[0055] Wetting and dispersing additive: 0.5

[0056] Acrylic resin and curing agent: 28

[0057] Solvent (butyl acetate: propylene glycol methyl ether acetate = 9: 1): 12

[0058] All the other are with embodiment 1.

Embodiment 3

[0060] Zinc Oxide: 4

[0061] Titanium dioxide: 28

[0062] Organic bentonite: 2

[0063] Zinc Phosphate: 3

[0064] Wetting and dispersing additive: 1.5

[0065] Acrylic resin and curing agent: 30

[0066] Solvent (butyl acetate: propylene glycol methyl ether acetate = 6: 1): 15

[0067] All the other are with embodiment 1.

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Abstract

The invention relates to a thin multifunctional solar reflecting coating and a preparation method thereof. The multifunctional solar reflecting coating is formed by coating multifunctional solar reflecting paint on the surface of a substrate, and the multifunctional solar reflecting paint comprises the following components in weight percentage: 25%-30% of resin system, 0-5% of metallic oxides, 25%-30% of titanium white, 0-2% of talcum powder, 1%-2% of organic bentonite, 2%-3% of corrosion-prevention fillers, 0.5%-1.5% of moist dispersing assistants and 10%-15% of solvents, wherein the resin system is an acrylic resin and curing agent system or a polyurethane modified acrylic resin and curing agent system, the metal oxides are one or more of aluminium oxide, magnesium oxide or zinc oxide, and the corrosion-prevention fillers are one or a mixture of two of aluminum tripolyphosphate or zinc phosphate. In the preparation method, multi-element compounding is carried out by adopting high-reflectivity functional fillers comprising the titanium white, the zinc oxide and the like to realize higher solar reflectivity and hemisphere emissivity of the coating so that the coating has obvious heat-reflecting and cooling effect; the acrylic resin is used as main film forming matter so that the excellent substrate adhesion and the outdoor durability of the coating are realized; and the bottomand the surface of the coating are combined into a whole so that the thickness of the coating is 0.1-0.2 mm, thereby the coating is convenient for construction.

Description

technical field [0001] The invention relates to a solar reflective multifunctional coating and a preparation method thereof, in particular to a thin (coating 0.1-0.2mm) solar reflective multifunctional coating, which belongs to the technical field of solar heat reflective coatings. Background technique [0002] Under the continuous irradiation of strong sunlight in summer, the surface temperature and internal temperature of buildings, transport vehicles, oil storage tanks and other objects will increase to varying degrees - or cause the reduction of the comfort of human living environment, or cause the internal objects The deterioration and damage of the oil may cause the oil to volatilize too fast, cause serious loss, and even catch fire and explode. At present, spraying, air-conditioning, air-conditioning, electric fans and other methods are mostly used in China to cool down, and the annual energy loss accounts for more than 20% of the total annual energy consumption. The...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09D133/00C09D5/33C09D5/08
Inventor 刘剑锋曾一兵罗正平卢鹉雷辉
Owner AEROSPACE RES INST OF MATERIAL & PROCESSING TECH
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