Study on the Self-Repairing Effect of Nanoclay in Powder Coatings for Corrosion Protection

材料科学 涂层 蒙脱石 腐蚀 盐雾试验 聚酯纤维 复合材料 介电谱 粒径 环氧树脂 粒子(生态学) 盐(化学) 化学工程 电化学 化学 地质学 工程类 物理化学 海洋学 电极
作者
Marshall Shuai Yang,Jinbao Huang,Hui Zhang,James J. Noël,Yolanda S. Hedberg,Jian Chen,Ubong Eduok,I. Barker,Jeffrey D. Henderson,Chengqian Xian,Haiping Zhang,Jesse Zhu,Haiping Zhang,Jesse Zhu
出处
期刊:Coatings [Multidisciplinary Digital Publishing Institute]
卷期号:13 (7): 1220-1220 被引量:8
标识
DOI:10.3390/coatings13071220
摘要

Powder coatings are a promising, solvent-free alternative to traditional liquid coatings due to the superior corrosion protection they provide. This study investigates the effects of incorporating montmorillonite-based nanoclay additives with different particle sizes into polyester/triglycidyl isocyanurate (polyester/TGIC) powder coatings. The objective is to enhance the corrosion-protective function of the coatings while addressing the limitations of commonly employed epoxy-based coating systems that exhibit inferior UV resistance. The anti-corrosive and surface qualities of the coatings were evaluated via neutral salt spray tests, electrochemical measurements, and surface analytical techniques. Results show that the nanoclay with a larger particle size of 18.38 µm (D50, V) exhibits a better barrier effect at a lower dosage of 4%, while a high dosage leads to severe defects in the coating film. Interestingly, the coating capacitance is found, via electrochemical impedance spectroscopy, to decrease during the immersion test, indicating a self-repairing capability of the nanoclay, arising from its swelling and expansion. Neutral salt spray tests suggest an optimal nanoclay dosage of 2%, with the smaller particle size (8.64 µm, D50, V) nanoclay providing protection for 1.5 times as many salt spray hours as the nanoclay with a larger particle size. Overall, incorporating montmorillonite-based nanoclay additives is suggested to be a cost-effective approach for significantly enhancing the anti-corrosive function of powder coatings, expanding their application to outdoor environments.
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