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Investigation into the Incidence of Severe Rusting and Pitting Corrosion in Imported Hot-Rolled AISI 430 Ferritic Stainless Steel Coils

机译:进口热轧AISI 430铁素体不锈钢卷中严重生锈和蚀腐蚀发病率的调查

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Metallurgical investigations were directed to probe into the incidence of inordinate rusting and pitting in imported AISI 430 grade hot-rolled ferritic stainless steel sheet coils. Visual examination, electron microprobe analyses (EPMA) and scanning electron microscopy (SEM) were concomitantly employed to investigate the problem. Studies revealed that the unprecedented degree of corrosion in ferritic stainless steel coils, during the short span of shipment time, was attributable to the ingress of sea water and its retention within the tight folds/ wraps of the steel coils during their shipment. The abundance of moisture and chloride (from the entrapped saline electrolyte) on the steel surface together with depleted 02 supply within the tight folds are presumed to have created conditions akin to an actively-corroding crevice, by way of passive film instability and its eventual breakdown on the stainless steel surface. As a consequence, the coils are believed to have suffered an accelerated and intensified chloride-induced corrosion attack and damage within the short span of shipment time. The investigations also revealed that the corrosive conditions were further exacerbated by the vulnerability and susceptibility of ferritic stainless steel to intergranular corrosion (IGC) due to its inherent sensitized condition. The paper thus throws light on an unusual precedent of chloride-induced corrosion in ferritic stainless steel and highlights the investigative metallographic work and corrosion failure analysis that led to above revelations.
机译:冶金调查旨在探讨进口AISI 430级热轧铁素体不锈钢板卷线圈的过度生锈和蚀的发生率。视觉检查,电子微探针分析(EPMA)和扫描电子显微镜(SEM)伴随着研究了问题。研究表明,铁素体不锈钢线圈中前所未有的腐蚀程度,在装运时间短的跨度期间,归因于海水的进入及其在货物期间钢卷的紧密折叠/包裹内的保留。在紧密折叠内,钢表面上的水分和氯化物(从捕获的盐水电解质)与耗尽的02供应一起被推测为通过被动膜不稳定的方式产生类似于主动腐蚀缝隙的条件及其最终故障在不锈钢表面上。因此,线圈被认为遭受加速和强化的氯化物诱导的腐蚀攻击和在装运时间短跨度内的损坏。该研究还表明,由于其固有的致敏条件,铁素体不锈钢与晶体腐蚀(IGC)的脆弱性和易感性进一步加剧了腐蚀性条件。因此,本文抛出了铁素体不锈钢中氯化物诱导的腐蚀的不寻常先前的抗腐蚀,并突出了导致其上述启示的调查金相工作和腐蚀失效分析。

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