Biologically Influenced Corrosion of Stainless Steel Welds by Water

C. Jenkins, D. Doman
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Abstract

Corrosion in a closed-loop cooling water system constructed of austenitic stainless steel occurred during an extended lay up of the system with biologically contaminated water. The characteristics of the failure were those of microbiologically influenced corrosion (MIC). The corrosion occurred at welds and consisted of large subsurface void formations with pinhole penetrations of the surfaces. Corrosive attack initiated in the heat affected zones of the welds, usually immediately adjacent to fusion lines. Stepwise grinding, polishing, and etching through the affected areas revealed that voids generally grew in the wrought material by uniform general corrosion. Tunneling or worm-holing was also observed, whereby void extension occurred by initiating daughter voids probably at flaws or other inhomogeneities. Selective attack occurred within the fusion zone, i.e., within the cast two-phase structure of the weld filler itself. The result was a void wall which consisted of a rough and porous ferritic material, a consequence of preferential attack of the austenitic phase and slightly lower rate of corrosive attack of the ferrite phase. The three-dimensional spongy surface was studied optically and with the scanning electron microscope.
水对不锈钢焊缝的生物影响腐蚀
由奥氏体不锈钢构成的闭环冷却水系统在与生物污染的水长时间淤积时发生腐蚀。失效特征为微生物影响腐蚀(MIC)。腐蚀发生在焊缝处,由大量的地下空洞形成,表面有针孔穿透。腐蚀发生在焊缝的热影响区,通常紧挨着熔合线。通过影响区域的逐步研磨、抛光和蚀刻表明,由于均匀的普遍腐蚀,变形材料中通常会出现空洞。隧道或虫洞也被观察到,由此产生的子空洞可能在缺陷或其他不均匀性发生扩展。选择性攻击发生在熔合区内,即在焊缝填料本身的铸造两相组织内。结果是一个由粗糙和多孔铁素体材料组成的空洞壁,这是奥氏体相优先攻击和铁素体相腐蚀攻击率略低的结果。用光学和扫描电镜对三维海绵状表面进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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