氢脆
材料科学
冶金
脆化
微观结构
氢
可塑性
晶体孪晶
高强度钢
复合材料
腐蚀
化学
有机化学
作者
Lawrence Cho,Yuran Kong,John G. Speer,Kip O. Findley
出处
期刊:Metals
[Multidisciplinary Digital Publishing Institute]
日期:2021-02-20
卷期号:11 (2): 358-358
被引量:28
摘要
Recent research efforts to develop advanced–/ultrahigh–strength medium-Mn steels have led to the development of a variety of alloying concepts, thermo-mechanical processing routes, and microstructural variants for these steel grades. However, certain grades of advanced–/ultrahigh–strength steels (A/UHSS) are known to be highly susceptible to hydrogen embrittlement, due to their high strength levels. Hydrogen embrittlement characteristics of medium–Mn steels are less understood compared to other classes of A/UHSS, such as high Mn twinning–induced plasticity steel, because of the relatively short history of the development of this steel class and the complex nature of multiphase, fine-grained microstructures that are present in medium–Mn steels. The motivation of this paper is to review the current understanding of the hydrogen embrittlement characteristics of medium or intermediate Mn (4 to 15 wt pct) multiphase steels and to address various alloying and processing strategies that are available to enhance the hydrogen-resistance of these steel grades.
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