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Effect of Urea-Formaldehyde (UF) with Waterborne Emulsion Microcapsules on Properties of Waterborne Acrylic Coatings Based on Coating Process for American Lime

机译:尿素 - 甲醛(UF)与水性乳液微胶囊对涂布法涂布工艺的水性丙烯酸涂料性能的影响

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摘要

The purpose of this paper is to explore the effect of urea-formaldehyde (UF) with waterborne emulsion microcapsules on the optical, mechanical and aging resistance properties of waterborne coatings from the perspective of coating process. In this paper, the microcapsules were prepared with UF resin as the wall materials and waterborne emulsion as the core materials. Based on the coating process, the optical, mechanical and aging resistance properties of the waterborne acrylic coatings with microcapsules for American lime were tested. The good coating process is three layers of primer, two layers of topcoat, and adding microcapsules into primer. The results showed that the coating process had little effect on the color difference of the paint film with microcapsules, the gloss of the paint film prepared by the good coating process was basically not changed, and the mechanical properties of the paint film were good. At this time, the hardness grade of the paint film was 3H, the adhesion was grade 0, the impact resistance was 110.0 N·cm−2, and the elongation at break was 29.7%. The microcapsules added to the primer had better liquid resistance than those added to the topcoat. The paint film had good stability and aging resistance, and could inhibit the generation of microcracks to a certain extent. The paint film prepared by the good coating process had better comprehensive performance. This work provides a technical reference for self-healing of the waterborne coatings on American lime.
机译:本文的目的是用从涂覆工艺的透视水性涂料的光学,机械和耐老化性能的水性乳液的微胶囊,以探索脲 - 甲醛(UF)的效果。在本文中,用UF树脂作为墙体材料和水性乳液作为核心材料制备的微胶囊。基于涂料的过程中,水性丙烯酸涂料,具有微胶囊美国石灰的光学,机械和耐老化性能进行了测试。良好的涂覆过程是底漆的三个层,外涂层的两层,并进入引物加入的微胶囊。结果表明,在涂覆过程对与微胶囊中的漆膜的色差影响不大,漆膜的光泽度制备的良好涂覆过程基本上没有改变,并且漆膜的力学特性均良好。此时,涂料膜的硬度等级为3H,粘合为0级,耐冲击性是110.0 N·cm-2时,断裂伸长率为29.7%。添加到引物的微囊比那些添加到外涂层更好的液体阻力。漆膜具有良好的稳定性和耐老化性能,而且可以抑制微裂纹的产生在一定程度上。以良好的镀膜工艺制备的漆膜具有较好的综合性能。这项工作提供了在美国的石灰水性涂料的自愈技术参考。

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