Influence of Delta-ferrite on Sensitization of the Austenitic Stainless Steel Weld Metal

Y. Nakao, K. Nishimoto, M. Ishizaki
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引用次数: 12

Abstract

Sensitization behavior of the delta-ferrite containing stainless steel weld metal was investigated using Type 304 and Type 308 alloys with the carbon content ranging from 0.04% to 0.09%, respective-ly. The weld metals heat treated at 923 K for times varying between 1 sec and 100 hr were tested for intergranular corrosion susceptibility in the acidified copper sulfate solution. The delta ferrite contain-ing weld metal with lower carbon content indicated rapidly healing of sensitization after the short heat treatment, whereas ones with higher carbon content than a critical value behaved as a fully austenitic steel regardless the existence of ferrite without showing the sign of rapid healing. SEM observation revealed that M23C6 precipitated preferentially at the ferrite-austenite boundary and also at the austenite-austenite boundaries although its amount at the latter boundaries was much less than the other in the both weld metals which indicated rapid healing of sensitization and behaved as a fully austenitic steel. A mathematical model is developed for the sensitization of the ferrite containing austenitic stainless steel weld metal. The degree of sensitization calculated using this model has shown a good agreement with the experimental corrosion test results. The calculation also demonstrated that for a given carbon content there exist the critical values for not only the total amount but the thickness of ferrite, above which the weld metal develop the rapid healing of sensitization.
δ -铁素体对奥氏体不锈钢焊缝金属敏化的影响
采用含碳量分别为0.04% ~ 0.09%的304型和308型合金,研究了含δ -铁素体不锈钢焊缝金属的敏化行为。在923 K下热处理1秒至100小时的焊缝金属在酸化硫酸铜溶液中进行了晶间腐蚀敏感性测试。含δ铁素体的低碳焊缝金属在短时间热处理后敏化迅速愈合,而含碳量高于临界值的焊缝金属即使有铁素体存在,也表现为完全奥氏体钢而不表现出快速愈合的迹象。SEM观察发现,M23C6在铁素体-奥氏体边界和奥氏体-奥氏体边界的析出优先,但在奥氏体-奥氏体边界的析出量要少得多,表明敏化愈合迅速,表现为完全奥氏体钢。建立了含铁素体奥氏体不锈钢焊缝金属敏化的数学模型。利用该模型计算的敏化度与试验腐蚀试验结果吻合较好。计算还表明,在一定碳含量下,不仅铁素体的总量,而且铁素体的厚度都存在一定的临界值,超过这个临界值,焊缝金属就会发生敏化的快速愈合。
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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