首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Hydrogen Induced Crack and Phase Transformation in Hydrogen Presstutd Tensile Test of 316L Stainless Steel
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Hydrogen Induced Crack and Phase Transformation in Hydrogen Presstutd Tensile Test of 316L Stainless Steel

机译:316L不锈钢的氢压拉伸试验中氢诱导的裂纹和相变

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摘要

The aim of this investigation is to prove the mechanism of hydrogen induced crack (HIC) of 316L stainless steels in hydrogen pressured tensile test. Microstructures like twin, planar slip, and abnormal phase transformation around the HIC were analyzed by transmission electron microscopy. Deformation twin accompanied by planar slip could be related to the main cause of HIC in the hydrogen pressured tensile condition, because intragranular HICs were mainly observed along the boundaries of twins and planar slip lines. An abnormal forbidden diffraction was also accompanied by HIC in the hydrogen attacked area. Examination of the HIC mechanism in austenitic stainless steel can be applied to the fitness of use for alloys with the possibility of various susceptible cracks in a hydrogen and stress atmosphere.
机译:这项研究的目的是在氢压力拉伸试验中证明316L不锈钢的氢致裂纹(HIC)的机理。通过透射电子显微镜分析了HIC周围的孪晶,平面滑移和异常相变等微观结构。在氢压力拉伸条件下,变形双胞胎伴有平面滑移可能与HIC的主要原因有关,因为晶内HIC主要沿双胞胎和平面滑移线的边界观察到。在氢攻击区域,HIC还伴随着异常的禁止衍射。奥氏体不锈钢中HIC机理的检查可适用于合金的使用,并可能在氢气和应力气氛中产生各种敏感裂纹。

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