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Severity of corrosion under insulation (CUI) to structures and strategies to detect it

机译:绝缘(CUI)下腐蚀的严重程度,以检测它的结构和策略

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This review paper considers the research conducted in the past 30 years in the field of corrosion under insulation (CUI). CUI is a significant challenge in many industries for reasons of high cost and risk because it proceeds undetected under insulation. CUI is an unavoidable problem which may potentially cause personnel injury or even fatalities. Presently, CUI counts for as much as 40 to 60% of pipeline-repairing cost. The use of coating under the insulation has been shown very efficient in the mitigation of CUI. Moisture and ion penetration, particularly chlorides, through the insulation and coating may produce stress corrosion cracking of austenitic stainless steels. The process of applying insulating materials on metal surfaces and the precautions that need to be taken are explained. Beside visual inspection, techniques such as neutron backscatter, capacitive imaging and pulsed eddy current can be used to detect the presence of CUI. The strength and limitations of the available commercial detection techniques are evaluated. A comprehensive list of industrial standards dealing with CUI is provided.
机译:本综述文件考虑了过去30年来在绝缘(CUI)下的腐蚀领域进行的研究。由于高成本和风险的原因,崔在许多行业中是一个重大挑战,因为它在绝缘下未被发现。 CUI是一个不可避免的问题,可能可能导致人员伤害甚至死亡。目前,CUI计数多达40%至60%的管道修复成本。在绝缘下的涂层的使用已经在崔的缓解中非常有效。水分和离子渗透,特别是氯化物,通过绝缘和涂层可以产生奥氏体不锈钢的应力腐蚀开裂。解释了在金属表面上施加绝缘材料的过程和需要采取的预防措施。在目视检查外,可以使用中子反向散射,电容成像和脉冲涡流等技术来检测崔的存在。评估可用商业检测技术的强度和局限性。提供了处理CUI的综合性工业标准清单。

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