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Electrochemical Nanoindentation Study on Influence of Hydrogen on Local Mechanical Properties of Fcc Metals at Slow Strain Rate

机译:氢对慢应变速率下Fcc金属局部力学性能影响的电化学纳米压痕研究

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摘要

A nanoindentation apparatus with an electrochemical cell for cathodic hydrogen charging and a wide dynamic range of load duration time was developed, and influence of hydrogen on local mechanical properties of Type 316L stainless steel, pure Ni, and three kinds of Ni-Cr bialloy (56Ni-43Cr, 69Ni-30Cr, 79Ni-20Cr) was investigated. For Type 316L stainless steel and pure Ni, nanohardness was increased by about 10% and unchanged, respectively, by hydrogen charging at load duration time between 0.1 s and 10 800 s. On the other hand, for Ni-Cr bialloys, degree of nanohardness increase by hydrogen charging was reduced with increase in load duration time. As a result, for 69Ni-30Cr and 79Ni-20Cr, hydrogen caused softening at long load duration time of more than 600 s. Hydrogen embrittlement susceptibility of each sample was also evaluated by slow-strain rate tensile tests, and compared with the observed nanoindentation results. The tendency was found that, for samples with higher hydrogen embrittlement susceptibility, softening is caused by hydrogen charging at long load duration time.
机译:研发了一种带有电化学电池的纳米压痕装置,该装置可用于阴极氢充电并具有宽动态范围的负载持续时间,并且氢对316L型不锈钢,纯Ni和三种Ni-Cr双合金(56Ni研究了-43Cr,69Ni-30Cr,79Ni-20Cr)。对于316L型不锈钢和纯Ni,通过在0.1 s和10 800 s之间的负载持续时间充氢,纳米硬度分别增加了约10%和不变。另一方面,对于Ni-Cr双合金,随着负载持续时间的增加,氢充填引起的纳米硬度增加程度降低。结果,对于69Ni-30Cr和79Ni-20Cr,氢在超过600 s的长负载持续时间内导致软化。还通过慢应变速率拉伸试验评估了每个样品的氢脆敏感性,并与观察到的纳米压痕结果进行了比较。发现趋势是,对于具有较高氢脆化敏感性的样品,软化是由长时间加载时间下的氢充电引起的。

著录项

  • 来源
    《ISIJ international》 |2016年第3期|418-423|共6页
  • 作者单位

    Steel Research Laboratories, Technical Research & Development Bureau, Nippon Steel & Sumitomo Metal Corporation, 1-8 Fuso-cho, Amagasaki-shi, Hyogo, 660-0891 Japan;

    Steel Research Laboratories, Technical Research & Development Bureau, Nippon Steel & Sumitomo Metal Corporation, 1-8 Fuso-cho, Amagasaki-shi, Hyogo, 660-0891 Japan;

    Steel Research Laboratories, Technical Research & Development Bureau, Nippon Steel & Sumitomo Metal Corporation, 1-8 Fuso-cho, Amagasaki-shi, Hyogo, 660-0891 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

    nanoindentation; hydrogen embrittlement; stainless steel; nickel; Ni-Cr bialloy;

    机译:纳米压痕氢脆不锈钢;镍;镍铬双合金;
  • 入库时间 2022-08-17 23:58:31

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