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Electrostatic powder spraying process for the fabrication of stable superhydrophobic surfaces

机译:静电粉末喷涂工艺用于制造稳定的超疏水表面

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摘要

Nano-sized Al_2O_3 particles were modified by heptadecafluorodecyl trimethoxysilane and 2,3-epoxy propoxy propyl trimethoxysilicane to make it both hydrophobic and reactive. The reactive nano-particles were mixed with polyester resin containing curing agents and electrostatic sprayed on stainless steel substrates to obtain stable superhydrophobic coatings after curing. The water contact angle (WCA) on the hybrid coating is influenced by the content of Al_2O_3 particles in the coating. As the Al_2O_3 concentration in the coating was increased from 0% to 8%, WCA increased from 68° to 165°. Surface topography of the coatings was examined using scanning electron microscopy (SEM). Nano-particles covered on the coating surface formed continuous film with greatly enhanced roughness, which was found to be responsible for the superhydrophobicity. The method is simple and cost effective and can be used for preparing self-cleaning superhydrophobic coating on large areas.
机译:用七氟癸基三甲氧基硅烷和2,3-环氧丙氧基丙基三甲氧基硅烷改性纳米Al_2O_3颗粒,使其具有疏水性和反应性。将反应性纳米粒子与包含固化剂的聚酯树脂混合,并静电喷涂在不锈钢基材上,以在固化后获得稳定的超疏水涂层。杂化涂层中的水接触角(WCA)受涂层中Al_2O_3颗粒含量的影响。随着涂层中的Al_2O_3浓度从0%增加到8%,WCA从68°增加到165°。使用扫描电子显微镜(SEM)检查涂层的表面形貌。覆盖在涂层表面的纳米粒子形成了粗糙度大大提高的连续膜,这被认为是造成超疏水性的​​原因。该方法简便,经济高效,可用于大面积制备自清洁超疏水涂料。

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