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首页> 外文期刊>Materials Science and Engineering >A novel 13Cr austenitic stainless steel with excellent mechanical properties and high hydrogen embrittlement resistance via heterostructure and TRIP effects
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A novel 13Cr austenitic stainless steel with excellent mechanical properties and high hydrogen embrittlement resistance via heterostructure and TRIP effects

机译:一种新型13CR奥氏体不锈钢,具有优异的机械性能和高氢气脆性抗性,通过异质结构和跳闸效应

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摘要

A 13Cr austenitic stainless steel with a good combination of high yield strength, ductility and hydrogen embrittlement resistance was designed by combining hetero-deformation induced strengthening and martensitic transformation induced plasticity effects. Room temperature metastable austenite is promoted by adding 8 wt% Mn to a 13Cr-5Ni-2Mo supermartensitic stainless steel. A heterostructure consisting of remaining martensite grains located between lath austenite grains and micrometer-sized austenite grains embedded inside ultrafine grains, was fabricated by cold rolling (44% reduction) and annealing at 973 K through a shear reversion process. The novel 13Cr austenitic stainless steel exhibits a yield strength of 923 MPa, tensile strength of 1085 MPa and total elongation of 33.2%. The hydrogen embrittlement resistance of the novel steel was determined by incremental step loading technique testing and was increased 40% compared with that of the 13Cr-5Ni-2Mo supermartensitic stainless steel. This study provides an approach for the design and industrial fabrication of high strength (125 ksi grade level), high ductility and hydrogen embrittlement resistant stainless steels that can be used in harsh service environments containing hydrogen.
机译:通过组合杂变强化强化和马氏体转化诱导的可塑性效应,设计了一种具有良好的高屈服强度,延展性和氢气脆性阻力的13Cr奥氏体不锈钢。通过将8wt%MN加入13Cr-5Ni-2MO超淀粉不锈钢,促进室温稳定性奥氏体。通过冷轧(减少44%)制造由位于内部超细晶粒的Lath奥氏体晶粒和微米尺寸的奥氏体晶粒之间的剩余马氏体颗粒组成的异质结构,通过剪切逆转过程,在973k下退火。新型13CR奥氏体不锈钢表现出923MPa的屈服强度,拉伸强度为1085MPa,总伸长率为33.2%。通过增量步骤加载技术试验测定新型钢的氢脆抗性,与13Cr-5Ni-2Mo超淀粉不锈钢相比增加了40%。本研究提供了一种用于设计和工业制造的方法,高强度(125 ksi等级),高延展性和氢气脆化耐耐药性不锈钢,可用于含有氢的恶劣服务环境。

著录项

  • 来源
    《Materials Science and Engineering》 |2020年第19期|139835.1-139835.10|共10页
  • 作者单位

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 PR China Corrosion and Protection Center University of Science and Technology Beijing Beijing 100083 PR China;

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 PR China Corrosion and Protection Center University of Science and Technology Beijing Beijing 100083 PR China;

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 PR China Corrosion and Protection Center University of Science and Technology Beijing Beijing 100083 PR China;

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 PR China Corrosion and Protection Center University of Science and Technology Beijing Beijing 100083 PR China;

    Department of Microstructure Physics and Alloy Design Max-Planck-Insutut für Eisenforschung Düsseldorf 40237 Germany;

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 PR China Corrosion and Protection Center University of Science and Technology Beijing Beijing 100083 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heterostructure; Martensitic transformation; Hydrogen embrittlement; 13Cr supermartensitic stainless steel;

    机译:异性结构;马氏体转型;氢脆;13CR超淀粉不锈钢;

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