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氢对有序态Ni_3Fe合金脆性的影响(英文) 被引量:2

Hydrogen Embrittlement of Ordered Ni_3Fe Alloy
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摘要 研究了有序态Ni3Fe合金在不同氢气压力中和在不同电流密度电解渗氢时合金的拉伸性能。结果表明:随着氢气压力或电流密度的增加,合金的延伸率先快速下降,随后逐渐趋于恒定;合金的氢脆因子与氢气压力或电流密度之间呈相同的依赖关系。有序态Ni3Fe合金在氢气中的脆化机制是催化反应生成的氢原子进入合金所致,合金的脆化程度与进入合金的氢原子数量有关。 The mechanical properties of ordered Ni3Fe alloy in gaseous hydrogen or simultaneously at hydrogen charging were investigated. The results show that the ductility of the ordered Ni3Fe alloys are fast decreasing, then turns to be stable with the increase of hydrogen pressure and current density during simultaneous hydrogen charging. The hydrogen embrittlement factor has the same dependence on the hydrogen pressure and charging current density. The mechanism of hydrogen embrittlement of ordered Ni3Fe alloy in gaseous hydrogen is the atomic hydrogen diffusing into alloy through the catalytic reaction, and the degree of embrittlement is proportional to the amount of hydrogen atoms diffusing into the alloy.
机构地区 上海大学
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2008年第12期2109-2113,共5页 Rare Metal Materials and Engineering
基金 National Natural Science Foundation of China(50371056 and 50671057)
关键词 有序态Ni3Fe 氢脆 力学性能 ordered Ni3Fe hydrogen embrittlement mechanical property
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参考文献13

  • 1Wan X J, Zhu J H, JingK L. Scripta Metall[J], 1992, 26:473.
  • 2Liu C T. Scripta Metall[J], 1992, 27:25.
  • 3George E P. Scripta Metall[J], 1993, 28:857.
  • 4Zhu J H, Huang S B, Wan X J. Scripta Metall[J], 1995, 32: 1399.
  • 5Liu C T, George E P, Oliver W C. Intermetallics[J], 1996, 4:77.
  • 6Chen Y X, Wan X J, Xu W X..4cta Metall Sinica (English Letters)[J], 1997, 10:363.
  • 7朱家红,万晓景.Fe_3Al系合金环境氢脆研究[J].金属学报,1994,30(3). 被引量:10
  • 8Cheng X Y, Wan X J. Scripta Metall[J], 2001, 44:325.
  • 9陈业新,姚美意,万晓景.Co_3Ti基合金在氢气环境中的脆性[J].材料研究学报,2000,14(3):255-259. 被引量:5
  • 10Wan X J, Chen Y X, Chen A Pet al. Intermetallics[J], 2005, 13:454.

二级参考文献26

  • 1[2]G.M.Camus, N.S.Stoloff, D.T.Duquette, "The effcet of order on hydrogen embrittlement of Ni3Fe ", Acta Metall., 37, 1497(1989)
  • 2[3]T.Takasugi, O.Izumi, "Geometrical consideration on grain boundary structure of L20 and L12 superlattice alloys ", Acta Metall., 31, 1187(1983)
  • 3[4]J.J.Kruisman, V.Vitek, T.M.Dehosson, " Atomic structure of stoichiometric and non-stoichiometric grain boundaries in A3B compounds with L12 structure ", Acta Metall., 36, 2729(1988)
  • 4[5]T.Takasugi, S.Hanada, " The influence of constituent elements and atomic ordering on hydrogen embrittlement of Ni3Fe polycrystals ", Intermetallics, 2, 225(1994)
  • 5[6]J.Q.Su, S.J.Gao, S.S.Zhang, J.T.Guo, Z.Q.Hu, "The effect of atomic order on environmental embrittlement of an FeaAl-based alloy ", Mater. Lett., 31, 227(1997)
  • 6[7]X.Y.Cheng, X.J.Wan, "The influence of atomic ordering on the hydrogen embrittlement of (Co,Fe)3V polycrystal ", Scripta mater, 44, 325(2001)
  • 7[8]D.G.Morris, G.T.Brown, R.C.Piller, R.E.Smallman, " Ordering and domain growth in Ni2Fe ", Acta Metall., 24, 21(1976)
  • 8Zhu J H,Scr Metall Mater,1993年,29卷,429页
  • 9Wan X J,Scr Metall,1992年,26卷,473页
  • 10Liu C T,Scr Metall Mater,1992年,27卷,599页

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