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Failure Analysis of Disbondment of Three-Layer Polyethylene Coatings from the Surface of Buried Steel Pipelines

机译:埋地钢管表面三层聚乙烯涂层脱落的失效分析

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A failure analysis was conducted to analyze the mode and causes of the disbondment of the three-layer polyethylene coatings from the surface of buried steel pipelines. The failure interface was analyzed through visual and microscopy investigations. Analysis of the coating at the disbonded interface revealed that the fusion bonded epoxy (FBE) layer had a fragile integrity which may have resulted from the in-service conditions of the pipeline. According to failure analysis of the disbonded interface, it can be concluded that degradation of the molecular structure of FBE layer was the most probable cause of the coating failure. It is believed that degradation of the molecular structure of FBE layer and subsequent disbondment of the coatings was caused by a mechanical-assisted cathodic delamination process which was due to the simultaneous action of chemical degradation and residual stresses at the coating-substrate interface. It is believed that surface pretreatment of the steel substrate in addition to coating process parameters of the powder coating are the main parameters in determining the long-term performance of the coating-substrate interface and should be carefully controlled.
机译:进行了失效分析,以分析三层聚乙烯涂层从埋入式钢管表面剥离的模式和原因。通过视觉和显微镜检查分析了故障界面。对脱粘界面处的涂层的分析表明,熔融粘合环氧树脂(FBE)层具有易碎的完整性,这可能是由于管道的使用条件所致。根据剥离界面的失效分析,可以得出结论,FBE层分子结构的退化是造成涂层失效的最可能原因。据信,FBE层的分子结构的降解和随后涂层的剥离是由机械辅助的阴极分层过程引起的,该过程是由于化学降解和涂层-基材界面处的残余应力的同时作用引起的。据信,除了粉末涂料的涂覆工艺参数外,钢基材的表面预处理是确定涂料-基材界面的长期性能的主要参数,应谨慎控制。

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