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首页> 外文期刊>Materials Science and Engineering >Factors affecting hydrogen-assisted cracking in a commercial tempered martensitic steel: Mn segregation, MnS, and the stress state around abnormal cracks
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Factors affecting hydrogen-assisted cracking in a commercial tempered martensitic steel: Mn segregation, MnS, and the stress state around abnormal cracks

机译:商业回火马氏体钢中氢辅助开裂的影响因素:Mn偏析,MnS和异常裂纹周围的应力状态

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The purpose of this paper is to reveal the dominant factors affecting tensile fracture under a hydrogen gas atmosphere. Tensile tests were conducted in hydrogen gas with circumferentially-notched specimens of a commercial tempered martensitic steel. Two specimens were exposed to hydrogen gas for 48 h before tensile testing; the other two specimens were not pre-charged. Longitudinal cracks along the loading direction and a transverse crack perpendicular to the loading direction were observed on a cross section of the non-charged specimen, but there was only one small crack on a cross section of the pre-charged specimen. Electron back scatter diffraction, energy dispersive X-ray spectrometry and finite element method analyses were applied to clarify the relationships among the longitudinal crack, Mn segregation, microstructures of martensitic steel and hydrogen. As a result, it has been demonstrated that Mn segregation and MnS promote hydrogen-assisted cracking in the tempered martensitic steel, causing the longitudinal cracking which is a mechanically non-preferential direction in homogeneous situations. More specifically, we have shown that the role of the Mn segregation is to promote the hydrogen-enhanced decohesion effect (HEDE), which is particularly important for crack propagation in the present case. These considerations indicate that the presence of Mn is crucially important for hydrogen-assisted cracking associated with hydrogen-enhanced localized plasticity (HELP) as well as HEDE.
机译:本文的目的是揭示影响氢气气氛下拉伸断裂的主要因素。在氢气中使用商用回火马氏体钢的带有周向缺口的试样进行拉伸试验。在拉伸试验之前,将两个样品暴露于氢气中48小时;其他两个标本未预充电。在未带电样品的横截面上观察到沿加载方向的纵向裂纹和垂直于加载方向的横向裂纹,但是在预填充样品的横截面上仅观察到一个小裂纹。应用电子背散射衍射,能量色散X射线能谱和有限元方法分析来阐明纵向裂纹,Mn偏析,马氏体钢和氢之间的关系。结果表明,Mn偏析和MnS促进回火马氏体钢中的氢辅助开裂,导致在均匀状态下纵向开裂是机械上非优选的方向。更具体地说,我们已经表明Mn偏析的作用是促进氢增强的去内聚作用(HEDE),这在当前情况下对于裂纹扩展特别重要。这些考虑表明,Mn的存在对于与氢增强的局部可塑性(HELP)以及HEDE相关的氢辅助裂化至关重要。

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