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首页> 外文期刊>International journal of hydrogen energy >Influence of macro segregation on hydrogen environment embrittlement of SUS 316L stainless steel
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Influence of macro segregation on hydrogen environment embrittlement of SUS 316L stainless steel

机译:宏观偏析对SUS 316L不锈钢氢环境脆化的影响

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摘要

The objective of this work is to identify microstructural variables that lead to the large scatter of the relative resistance of 316 grade stainless steels to hydrogen environment embrittlement. In slow displacement rate tensile testing, two almost identical (by nominal chemical composition) heats of SUS 316L austenitic stainless steel showed significantly different susceptibilities to HEE cracking. Upon straining, drawn bar showed a string-like duplex microstructure consisting of α'-martensite and y-austenite, whereas rolled plate exhibited a highly regular layered a'-y structure caused by measured gradients in local Ni content (9.5-13 wt%). Both martensite and austenite are intrinsically susceptible to HEE. However, due to Ni macro segregation and microstructural heterogeneity, fast H-diffusion in martensite layers supported a 10 times faster H-enhanced crack growth rate and thus reduced tensile reduction in area. Nickel segregation is thus a primary cause of the high degree of variability in H_2 cracking resistance for different product forms of 316 stainless steel.
机译:这项工作的目的是确定导致316级不锈钢对氢环境脆化的相对电阻的较大分散的微观结构变量。在慢速位移拉伸试验中,SUS 316L奥氏体不锈钢的两种几乎相同的热(按标称化学成分)显示出对HEE裂纹的敏感性显着不同。拉伸后,拉制棒显示出由α'-马氏体和y-奥氏体组成的线状双相微观结构,而轧制板则表现出高度规则的分层a'-y结构,这是由于局部Ni含量(9.5-13 wt% )。马氏体和奥氏体本质上都容易受到HEE的影响。但是,由于Ni宏观偏析和微观结构的异质性,马氏体层中的快速H扩散使H增强的裂纹扩展速率提高了10倍,从而减小了拉伸伸长率。因此,对于316不锈钢的不同产品形式,镍偏析是导致H_2抗裂性高度变化的主要原因。

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