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Degradation study of polymer coating: Improvement in coating weatherability testing and coating failure prediction

机译:聚合物涂层的降解研究:改进涂层耐候性测试和涂层失效预测

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摘要

Increased awareness of the environmental impact of solvent-borne anticorrosive coatings has increased the focus on long-term performance of a coating in order to make maintenance less frequent. In this work, three anticorrosive coating systems were tested. All samples were exposed to different artificial weathering tests: a neutral salt spray test (NSS ISO 9227) and four cycles (QUV ASTM G53, ASTM D5894, ISO 20340 and a new laboratory cycle). Besides, the same samples were exposed to a 4 years field test in locations with corrosivity classified as C3 and C5M. The degradation of the individual coats of the coating system (topcoat, basecoat and primer) were studied by FTIR spectroscopy and Dynamical Mechanical Analysis. The impact of these physico-chemical changes on the corrosion protection properties of the whole system was discussed based on electrochemical impedance spectroscopy (EIS) in 3 wt% NaCl solution, SEM observations, pull-off test and measurements of delaminated areas from a scribe. On the basis of these results, the controlling parameters in coating degradation mechanism were identified. The relevance of various accelerated test cycles is discussed based on correlation between test results and field exposure.
机译:对溶剂型防腐涂料对环境影响的认识的提高,使人们更加关注涂料的长期性能,以减少维护的频率。在这项工作中,测试了三种防腐涂料系统。所有样品都经受了不同的人工老化测试:中性盐雾测试(NSS ISO 9227)和四个循环(QUV ASTM G53,ASTM D5894,ISO 20340和新的实验室循环)。此外,相同的样品在腐蚀性等级为C3和C5M的位置进行了4年的现场测试。通过FTIR光谱和动态力学分析研究了涂料体系中各个涂层(面漆,底漆和底漆)的降解情况。基于3%重量的NaCl溶液中的电化学阻抗谱(EIS),SEM观察,拉拔试验和划线员测量的分层区域,讨论了这些物理化学变化对整个系统的腐蚀防护性能的影响。根据这些结果,确定了涂层降解机理的控制参数。基于测试结果与现场暴露之间的相关性,讨论了各种加速测试周期的相关性。

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