用于海上风塔结构钢基体防腐保护的自粘箔系统的性能

Michael Irmer, Daniel Kelm, Tom Marquardt, Andreas W. Momber, K. Eiben, Sascha Buchbach
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引用次数: 0

摘要

采用传统的液体喷涂方法涂覆多层有机保护涂层系统非常复杂,耗时耗力,而且需要大量的技术设备。替代这些方法的另一种方法是将薄而自粘的箔系统直接涂覆在钢基材上。通过模拟海上条件的加速循环实验室试验,对箔材料和压敏粘合剂(含或不含腐蚀抑制剂)的不同组合以及不同的表面处理参数,测试了新开发的箔系统的腐蚀防护性能。粘附性能是通过剥离试验确定的。试验采用统计方法(实验设计、方差分析)进行设计。结果表明,采用以下因素组合的箔系统具有最佳性能:表面处理等级:Sa 2½;粗糙度:Rz = 50-75 µmRz = 50-75 微米;研磨材料:高碳钢砂;粘合剂层厚度:200 克/平方米;抑制剂材料:水合硅酸铝钙;箔材料:聚氯乙烯(160 微米)+ 聚甲基丙烯酸甲酯(40 微米)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The performance of a self‐adherent foil system for the corrosion protection of steel substrates for offshore wind tower structures

The performance of a self‐adherent foil system for the corrosion protection of steel substrates for offshore wind tower structures
The application of multilayer organic protective coating systems with conventional liquid spray methods is complex, time‐ and energy‐consuming, and it requires extensive technical equipment. An alternative to these methods is the application of thin, self‐adherent foil systems directly to the steel substrate. The corrosion protection performance of newly developed foil systems was tested for various combinations of foil materials and pressure‐sensitive adhesives (with and without corrosion inhibitors) and different surface preparation parameters by means of accelerated cyclic laboratory tests with simulated offshore conditions. The adhesion properties were determined by means of peel tests. The tests were designed, by means of statistical methods (design of experiments, analysis of variance). A foil system with the following factor combination was found to provide an optimum performance: Surface preparation grade: Sa 2½; roughness: Rz = 50–75 µm; abrasive material: high‐carbon steel grit; adhesive layer thickness: 200 g/m2; inhibitor material: calcium aluminum polyphosphate silicate hydrate; foil material: polyvinylchloride (160 µm) + poly(methyl methacrylate) (40 µm).
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