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Fabrication and Properties of Superhydrophobic Waterborne Polyurethane Composites with Micro-Rough Surface Structure Using Electrostatic Spraying

机译:静电喷涂制备具有超微表面结构的超疏水水性聚氨酯复合材料及其性能

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摘要

Waterborne polyurethane (WPU) coatings hold advantages of good toughness, low cost and environmental protection. However, the low water contact angle (WCA), poor wear and corrosion resistance make them unsuitable for application in the superhydrophobic coatings such as antipollution flashover coatings for transmission lines, self-cleaning coatings for outdoor equipment and waterproof textiles. A series of superhydrophobic WPU composites (SHWPUCs) with micro-rough surface structure was prepared by electrostatic spraying nano-SiO particles on WPU composites with low surface energy. It showed that as the hydrophobic system content rose the WCAs of the composites first increased and then remained stationary; however, the adhesion and corrosion resistance first increased and then decreased. An appropriate addition of the hydrophobic system content would lead to a dense coating structure, but an excessive addition could increase the interfaces in the coating and then reduce the coating performance. When the mass ratio of the WPU dispersion, polytetrafluoroethylene (PTFE) particles and modified polydimethylsiloxane was 8:0.3:0.4, 10 g/m nano-SiO particles were sprayed on the uncured coating surface to construct the SHWPUC with a WCA of 156°. Compared with pure WPU coating, its adhesion and corrosion resistance increased by 12.5% and one order of magnitude, respectively; its wear rate decreased by 88.8%.
机译:水性聚氨酯(WPU)涂料具有良好的韧性,低成本和环保的优点。但是,低的水接触角(WCA),较差的耐磨性和耐腐蚀性使其不适用于超疏水性涂料,例如用于传输线的防污闪络涂料,用于室外设备的自清洁涂料和防水纺织品。通过在低表面能的WPU复合材料上静电喷涂纳米SiO颗粒,制备了一系列具有微粗糙表面结构的超疏水WPU复合材料。结果表明,随着疏水体系含量的增加,复合材料的WCA首先增加,然后保持稳定。但是,附着力和耐腐蚀性首先增加然后降低。疏水体系含量的适当添加将导致致密的涂层结构,但是过量添加会增加涂层的界面,从而降低涂层性能。当WPU分散体,聚四氟乙烯(PTFE)颗粒和改性的聚二甲基硅氧烷的质量比为8:0.3:0.4时,将10g / m的纳米SiO颗粒喷涂在未固化的涂层表面上以构建WCA为156°的SHWPUC。与纯WPU涂层相比,其附着力和耐腐蚀性分别提高了12.5%和一个数量级;磨损率降低了88.8%。

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