Hydrogen embrittlement behavior of pure ni and ni–20cr alloy with different grain sizes

被引:0
|
作者
Kobayashi N. [2 ]
Koyama M. [1 ,2 ,3 ]
Kobayashi K. [4 ]
Hojo T. [1 ,2 ]
Akiyama E. [1 ,2 ]
机构
[1] Institute for Materials Research, Tohoku University, Sendai
[2] Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku University, Sendai
[3] Elements Strategy Initiative for Structural Materials (ESISM), Kyoto University, Kyoto
[4] R and D Laboratories, Nippon Steel Corporation, Amagasaki
关键词
Fracrography; Grain refinement; Hydrogen embrittlement; Intergranular fracture; Nickel alloy;
D O I
10.2320/JINSTMET.J2020036
中图分类号
学科分类号
摘要
The grain size effects on the hydrogen embrittlement susceptibility of pure Ni and Ni–20Cr alloy were investigated. The hydrogen embrittlement susceptibility was evaluated by tensile testing under electrochemical hydrogen charging. Relative elongation, defined as the elongation under hydrogen charging divided by elongation in air, increased with increasing grain size in pure Ni (the grain size was in the range of 11–22 µm). In contrast, the relative elongation of Ni–20Cr alloy increased with decreasing grain size from 13 to 1.8 µm. Correspondingly, intergranular fracture was suppressed by grain coarsening in pure Ni and grain refinement in the Ni–20Cr alloy. In addition, the intergranular fracture surface in pure Ni showed curved slip lines, and in the Ni–20Cr alloy showed straight line marks. These fractographic features imply that the mechanisms of the hydrogen–assisted intergranular crack growth were different in pure Ni and Ni–20Cr alloy and this can be attributed to the difference in stacking fault energy. © 2020 The Japan Institute of Metals and Materials
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页码:49 / 58
页数:9
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