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Effect of Melamine Formaldehyde Resin Encapsulated UV Acrylic Resin Primer Microcapsules on the Properties of UV Primer Coating

机译:三聚氰胺甲醛树脂包埋UV 丙烯酸树脂底漆微胶囊对UV底漆涂料性能的影响

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摘要

Ultra-Violet (UV) coatings are widely adaptable of substrates and produce low emissions of volatile organic compounds. UV coatings can extend service life by adding self-healing microcapsules that restore integrity after sustaining damage. In this study, UV coating was used as a core material; microcapsules were produced and added to the UV coating to enhance its self-healing property, providing a good protection for both the UV coating and the substrate. UV primer microcapsules were prepared with UV primer as the core material and melamine formaldehyde resin as the wall material. The UV primer containing more than 98.0% solids content was mainly composed of epoxy acrylic resin, polyester acrylic resin, trihydroxy methacrylate, trimethyl methacrylate, and photo initiator. The preparation process of the UV primer microcapsules was optimized. Further, the UV coating was prepared with better UV primer microcapsules, and the effects of the UV primer microcapsules alongside the comprehensive properties of the coating were studied. The best preparation process for the UV primer microcapsules was as follows: the wall-core mass ratio was 1:0.50, Triton X-100 and Span-20 as emulsifiers with an HLB value of 10.04, the microcapsule reaction temperature was 70 °C, and the reaction time of the was 3.0 h. When the quantity of the UV primer microcapsules increased in the coating, color difference ΔE of the coating increased, gloss decreased, transmittance decreased, elongation at break increased and then decreased, roughness increased, and self-healing rate first increased and then decreased. When the addition of the UV primer microcapsules reached 2.0%, the color difference ΔE of the coating was 1.71, the gloss was 106.63 GU, the transmittance was 78.80%, the elongation at break was 3.62%, the roughness was 0.204 μm, and the self-healing rate was 28.56%, which were the best comprehensive properties of the UV primer. To improve the comprehensive properties of the UV coatings, the UV coatings were modified by a microcapsule technology, which gave the UV coatings a better self-healing property. The application range of microcapsules for the UV coatings was broadened. Based on the previous research of microcapsules in UV coatings, the results further refined the study of the effects of adding self-healing microcapsules to UV coatings using the UV coating itself as the core material.
机译:紫外线 (UV) 涂料广泛适用于基材,挥发性有机化合物的排放量低。UV 涂料可以通过添加自修复微胶囊来延长使用寿命,这些微胶囊在遭受损坏后可以恢复完整性。在这项研究中,UV 涂料被用作芯材;生产微胶囊并添加到 UV 涂料中以增强其自愈性,为 UV 涂料和基材提供良好的保护。以紫外线底漆为芯材,三聚氰胺甲醛树脂为墙体材料,制备了紫外线底漆微胶囊。固体含量超过 98.0% 的 UV 底漆主要由环氧丙烯酸树脂、聚酯丙烯酸树脂、甲基丙烯酸三羟基酯、甲基丙烯酸三甲酯和光引发剂组成。优化了 UV 引物微胶囊的制备工艺。此外,用更好的 UV 底漆微胶囊制备 UV 涂料,并研究了 UV 底漆微胶囊的效果以及涂层的综合性能。UV底漆微胶囊的最佳制备工艺为:壁核质量比为1:0.50,以Triton X-100和Span-20为乳化剂,HLB值为10.04,微胶囊反应温度为70 °C,反应时间为3.0 h。当涂料中UV底漆微胶囊的数量增加时,涂料的色差ΔE增加,光泽度降低,透光率降低,断裂伸长率先增加后减小,粗糙度增加,自修复率先增加后降低。当UV底漆微胶囊添加量达到2.0%时,涂层的色差ΔE为1.71,光泽度为106.63 GU,透光率为78.80%,断裂伸长率为3.62%,粗糙度为0.204 μm,自修复率为28.56%,是UV底漆的最佳综合性能。为了提高 UV 涂料的综合性能,UV 涂料通过微胶囊技术进行了改性,这使 UV 涂料具有更好的自修复性能。用于 UV 涂料的微胶囊的应用范围得到了扩大。基于先前对 UV 涂料中微胶囊的研究,结果进一步完善了以 UV 涂料本身为核心材料在 UV 涂料中添加自修复微胶囊效果的研究。

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