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Techniques for investigation of hydrogen embrittlement of advanced high strength steels

机译:高强度钢氢脆调查技术

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摘要

Production volumes of advanced high strength steels (AHSS) are growing rapidly due to material and energy savings they provide in a number of application areas. In order to use their potential fully, it is necessary to minimize any danger of unexpected failures caused by hydrogen embrittlement. It is possible only if deeper understanding of underlying mechanisms is obtained through further research. Besides description of main grades of AHSS and mechanisms of HE, this paper reviews available tools for determination of hydrogen content and susceptibility to HE focusing on atmospheric conditions. Techniques such as slow strain rate testing, constant load testing, electrochemical permeation technique, scanning Kelvin probe and scanning Kelvin probe force microscopy have already been used to study the effect of hydrogen entered under atmospheric exposure conditions. Nanoindentation, hydrogen microprint technique, thermal desorption spectroscopy, Ag decoration or secondary ion mass spectrometry can be also conducted after atmospheric exposure.
机译:由于在许多应用领域提供的材料和节能,生产量的先进高强度钢(AHSS)正在迅速增长。为了充分利用它们的潜力,有必要最大限度地减少由氢脆引起的意外故障的任何危险。只有在通过进一步研究获得对潜在机制的更深层次的理解时,才有可能。除了描述AHSS和机制的主要成绩和机制的描述之外,本文评论了可用的工具,用于测定氢含量和易感性,以重点关注大气条件。诸如慢应变速率测试,恒定负载测试,电化学渗透技术,扫描开尔文探针和扫描的kelvin探针力学显微镜的技术已经用于研究氢气在大气暴露条件下进入的影响。在大气暴露之后,也可以进行纳米intentation,氢微胶体技术,热解吸光谱,Ag装饰或二次离子质谱。

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