High-gloss aqueous woodenware paint
A water-based wood paint and high-gloss technology, which is applied in coatings and other directions, can solve the problems of poor water resistance and achieve low cost, improved water resistance, and reasonable proportioning effects
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Embodiment 1
[0015] A high-gloss water-based wood paint, including the following components and proportions: 80 parts of acrylic emulsion, 2 parts of N-methylpyrrolidone, 0.2 parts of organic polar compound defoamer, 0.3 parts of BYK-346, 1 part of propylene glycol, 0.2 parts of BYK301 1 part, 2 parts of OK607, 0.5 part of water-soluble polyacrylate, 0.5 part of nano-silver liquid, the acrylic emulsion is synthesized by the following raw materials: 33 parts of butyl acrylate, 17 parts of methyl methacrylate, 1 part of deionized water 63 parts of sodium alkylbenzene polyether sulfonate 1.5 parts of ammonium persulfate 0.2 parts.
Embodiment 2
[0017] A high-gloss water-based wood paint, including the following components and proportions: 85 parts of acrylic emulsion, 5 parts of N-methylpyrrolidone, 1 part of organic polar compound defoamer, 0.5 parts of BYK-346, 2 parts of propylene glycol, and 0.8 parts of BYK301 1 part, 4 parts of OK607, 1.5 parts of water-soluble polyacrylate, 0.1 part of nano-silver liquid, the acrylic emulsion is synthesized by the following raw materials: 33 parts of butyl acrylate, 17 parts of methyl methacrylate, 1 part of deionized water 63 parts of sodium alkylbenzene polyether sulfonate 1.5 parts of ammonium persulfate 0.2 parts.
Embodiment 3
[0019] As an improvement to Example 1 or Example 2, the raw material further includes the following components: 0.5-1 part of vinyltriethoxysilane. Vinyltriethoxysilane contains three alkoxy groups. Under low pH conditions, the alkoxy groups are hydrolyzed to produce silanols, and the silanols shrink and condense to realize crosslinking and form a three-dimensional network structure. Therefore, as long as the pH value of the system is controlled at about 7, the hydrolytic cross-linking of the silicone cross-linking agent can be inhibited to ensure the stability of the system. When used, there is no need to heat the polymer chains during the drying and curing process to form crosslinks with the volatilization of moisture, thereby improving the water resistance of the polymer to a large extent.
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