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The Effects of Phosphorus and Sulfur on Susceptibility to Weld Hot Cracking in Austenitic Stainless Steels

机译:磷和硫对奥氏体不锈钢焊接热裂敏感性的影响

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Five heats of Type 308 austenitic stainless steel were custom designed and melted with equal combined phosphorus and sulfur (P+S) levels of 0.032 wt-%, representing very low S and high P, very low P and high S, and equal amounts of each at both median and very low levels. The effect of individual P and S levels on weld hot cracking behavior was studied using the Subscale Vare-straint test. Phosphorus and sulfur partitioning and observed effects on cracking were studied using optical and scanning electron microscopy and microprobe. Results showed that P is more potent in exacerbating cracking susceptibility in the fusion zone, and S is more potent in exacerbating cracking in the heat-affected zone, with low contents of both residual elements being more effective for avoiding HAZ cracking than a small amount of ferrite.
机译:定制设计了五种308型奥氏体不锈钢,并以相等的0.032 wt%的磷和硫(P + S)组合含量熔化,表示极低的S和高P,极低的P和高S,以及等量的每个都处于中位数和非常低的水平。使用Subscale Vare-straint试验研究了单独的P和S水平对焊缝热裂纹行为的影响。使用光学和扫描电子显微镜以及微探针研究了磷和硫的分配以及对裂解的影响。结果表明,P在加剧熔化区的裂纹敏感性方面更有效,S在加剧热影响区的裂纹方面更为有效,两种残留元素的含量均比少量的HAZ裂纹更有效地避免了HAZ裂纹。铁氧体。

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