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首页> 外文期刊>ISIJ international >Effects of Retained Austenite on Hydrogen Embrittlement in TRIP-aided Bainitic Ferrite Steel Sheet
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Effects of Retained Austenite on Hydrogen Embrittlement in TRIP-aided Bainitic Ferrite Steel Sheet

机译:保留奥氏体对抗触发贝氏体铁氧体钢板氢脆的影响

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摘要

In order to suppress global warming, it is necessary to reduce the weight of autobodies, whereas improvement of the collision safety of automobiles is required which results in a weight increase. Research and development of high-strength steel sheets for autobodies are being carried out to achieve both two objectives. Among various high-strength steel sheets, low alloy steels utilizing transformation-induced plasticity of retained austenite (TRIP-aided steels) have attracted attention as body frame and automotive parts materials because of their high strength and ductility. However, there is concern about hydrogen embrittlement in low alloy TRIP-aided steels with a tensile strength exceeding 1000 MPa, as in conventional high-strength steels. In this study, in order to reveal the role of retained austenite for hydrogen embrittlement on TRIP-aided bainitic ferrite steel (TBF steel), (ⅰ) several TBF steel sheets with different volume fraction and carbon concentration of retained austenite were prepared by austempering the original sheet for different durations, and (ⅱ) slow strain rate technique tensile tests were carried out on hydrogen-charged and uncharged test pieces of the sheets together with microstructure observations and X-ray diffractions. It was revealed that hydrogen embrittlement of TBF steel sheet became suppressed with increasing austempering time, which was attributable to the increase of surface area of lath and/or filmy metastable retained austenite acting as a trapping site for hydrogen.
机译:为了抑制全球变暖,需要减少自动展开的重量,而需要改进汽车的碰撞安全性,这导致体重增加。正在开展高强度钢板的研究与开发,以实现两个目标。在各种高强度钢板中,利用转化诱导的保留奥氏体(行程辅助钢)的低合金钢(跳动钢)由于其高强度和延展性而引起了身体框架和汽车部件材料的关注。然而,对于低合金跳闸钢中的氢脆,抗拉伸强度超过1000MPa的氢脆,如传统的高强度钢一样。在这项研究中,为了揭示保留奥氏体对潮呼吸诱导贝氏体铁氧体钢(TBF钢)的作用,(Ⅰ)通过尊重奥斯特静脉制备具有不同体积分数和保留奥氏体的碳浓度的几个TBF钢板不同持续时间的原始纸张,(Ⅱ)慢应变速率技术拉伸试验在纸张的氢气和不带电试验片上,以及微观结构观察和X射线衍射。揭示了TBF钢板的氢脆随着常态运动时间而抑制了TBF钢板的抑制,这可归因于车门表面积的增加和/或薄膜稳定性保留的奥氏体的增加作为氢的捕获部位。

著录项

  • 来源
    《ISIJ international》 |2021年第4期|1315-1321|共7页
  • 作者单位

    Depertment of Mecchanical Systems Engineering College of Engineering Ibaraki University 4-12-1 Nakanarusawa-cho Hitachi 316-8511 Japan;

    Major in Mecchanical Systems Engineering Graduate School of Science and Engineering Ibaraki University. Now at Dai Nippon Printing Co. Ltd. 1-1-3 Midorigahara Tsukuba 300-2646 Japan;

    Major in Mecchanical Systems Engineering Graduate School of Science and Engineering Ibaraki University 4-12-1 Nakanarusawa-cho Hitachi 316-8511 Japan;

    Depertment of Mecchanical Systems Engineering College of Engineering Ibaraki University 4-12-1 Nakanarusawa-cho Hitachi 316-8511 Japan;

    Institute for Materials Research Tohoku University 2-1-1 Katahira Aoba-ku Sendai 980-8577 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    TRIP-aided bainitic ferrite steel; retained austenite; hydrogen embrittlement; strain-induced martensite transformation; microstructure;

    机译:旅行辅助贝氏体铁氧体钢;保留奥氏体;氢脆;应变诱导的马氏体转化;微观结构;

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