Multilayer radiation cooling coating and preparation method thereof
A technology of coatings and reflective materials, applied in the direction of reflection/signal coatings, epoxy resin coatings, polyurea/polyurethane coatings, etc., can solve the problems of reducing coating hardness and wear resistance, complex on-site processes, and low reflectivity. Achieve the effects of low cost, simple process and high solar reflectance
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Embodiment 1~4
[0036] UV reflective topcoat preparation:
[0037] 1) Scatter:
[0038] Add deionized water, one-half parts by weight of additives, ultraviolet reflective materials, and fillers to a high-speed disperser, and disperse for 70 minutes at a line speed of 20m / s to obtain a slurry;
[0039] 2) Stirring:
[0040] Add the film-forming emulsion and the remaining 1 / 2 weight part of additives to the slurry, stir at a speed of 3m / s for 30min, and filter through a 90-mesh screen to obtain a UV reflective topcoat.
[0041] Table 1
[0042]
Embodiment 5~8
[0044] Preparation of visible light reflective primer:
[0045] 1) Scatter:
[0046] Add deionized water, one-half parts by weight of additives, visible light reflective materials, and fillers into a high-speed disperser, and disperse for 70 minutes at a line speed of 20m / s to obtain a slurry;
[0047] 2) Stirring:
[0048] Add the film-forming emulsion and the remaining 1 / 2 weight part of additives to the slurry, stir for 30 minutes at a speed of 1-5 m / s, and filter through a 90-mesh sieve to obtain a visible light reflection intermediate coating.
[0049] Table 2
[0050]
Embodiment 9~12
[0052] Preparation of near-infrared reflective primer:
[0053] 1) Scatter:
[0054] Add deionized water, one-half parts by weight of additives, near-infrared reflective materials, and fillers into a high-speed disperser, and disperse for 70 minutes at a line speed of 20m / s to obtain a slurry;
[0055] 2) Stirring:
[0056] Add the film-forming emulsion and the remaining 1 / 2 weight part of additives to the slurry, stir for 30 minutes at a speed of 1-5 m / s, and filter through a 90-mesh sieve to obtain a near-infrared reflection primer.
[0057] table 3
[0058]
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