光泽度(光学)
材料科学
涂层
腐蚀
粉末涂料
表面粗糙度
复合材料
表面光洁度
冶金
粒径
盐雾试验
化学工程
工程类
作者
Jinbao Huang,Marshall Shuai Yang,Libin Wan,Keyong Tang,Hui Zhang,Jian Chen,James J. Noël,I. Barker,Haiping Zhang,Jianbo Zhu
标识
DOI:10.1016/j.cej.2022.140815
摘要
In recent years, powder coatings are capturing more of the liquid coatings market due to their economical, ecological, environmental, and energy-saving benefits, yet their low surface qualities still hinder their wider application. In this study, ultrafine powder coatings (∼22 µm in size) were fabricated and compared with coarse powder coatings (∼35 µm in size) in terms of particles deposition during spray, leveling of coating powder during curing, and surface qualities, inner structures, and anti-corrosive properties of the obtained coating films. The results show that the ultrafine particles pack more loosely and uniformly during spraying with smaller average air pockets and level and degas faster during curing than their coarse counterparts. These characters lead the ultrafine powder to demonstrate lower surface roughness, higher gloss, fewer inner voids, and higher corrosion resistance. The significant increase in corrosion performance is exhibited through high barrier properties and narrow salt spray creepage. This study contributes not only to the in-depth understanding of how particle size affects coating film structure and properties, such as gloss, surface roughness and corrosion protection, but also to the promotion of powder coating technology in broader fields such as electronics and automotive industries.
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