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织构对Zr-4合金低周寿命的影响 被引量:3

Effect of Texture on Low Cycle Fatigue Life of Zr-4 Alloy
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摘要 采用XRD测定了Zr-4合金板材的织构,用拉扭试验机分别测试了Zr-4合金板材在室温时轧向(R试样,拉伸轴平行于轧向)和横向(T试样,拉伸轴平行于横向)的低周疲劳性能,用TEM研究了Zr-4合金的疲劳亚结构。结果表明:Zr-4合金板材存在明显的织构;轧向的低周疲劳性能高于横向;在循环变形过程中,只有部分晶粒发生了塑性变形,发生塑性变形的晶粒内存在着许多位错和滑移线,T试样中的位错和滑移线比R试样更稠密。板材织构造成了R试样和T试样的低周疲劳寿命。 Texture was examed using XRD and low cycle fatigue property was analyzed using fatigue tester(25 kN) of MTS809A/T-type for Zr-4 alloy plate at room temperature in rolling direction and transverse direction, respectively, in this paper. Results show that the Zr-4 alloy plate has the obvious texture, and the low cycle fatigue property is better in rolling direction than in transverse direction. During the cycle deformation, only partial grains exhibited plastic deformation, where many dislocations and slip lines existed. The dislocations and slip lines in the deformed gains are denser in transverse direction than that in the rolling direction. The difference of low cycle fatigue lifes for the two samples is due to the texture in the Zr-4 alloy plate.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2007年第5期803-807,共5页 Rare Metal Materials and Engineering
基金 核燃料与材料重点实验室基金(51481020202ZS8501)资助
关键词 ZR-4合金 低周疲劳 织构 位错 滑移线 Zr-4 alloy low cycle fatigue texture dislocation slip line
作者简介 沈保罗,男,1945年生,教授,四川大学材料科学与工程学院,四川成都610064,E-mail:028-89027446,E-mail:Shen_boluo@163.com
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参考文献18

  • 1Li Cong(李聪).Thesis for the Doctorate, Sichuan University(四川大学博士学位论文)[D],2004
  • 2Tenckhoff E, Rittenhouse P L. Journal of Nuclear Materials[J], 1970, 35(1): 14
  • 3Tenckhoff E. Metallurgical Transactions A[J], 1972, 9 (10):1401
  • 4Ballinger R G, Lucas G E, Pelloux R M. Journal of Nuclear Materials[J], 1984, 126(1): 53
  • 5Nakatsuka M, Hayashi Y. J. Nucl Sci & Tech[J], 1981, 18(10):785
  • 6Lee D H, Kwun S I. Scripta Metallurgica et Materialia[J],1994, 31(11): 1475
  • 7Choi H I, Lee D H, Kwun S I. Scripta Materialia[J], 1998,38(4): 565
  • 8Akhtar A, Teghtsoonian A. Acta Materialia[J], 1971, 19(7):655
  • 9Tan X, Gu H, Laird C et al. Metall Mater Trans A[J], 1998, 29(2): 507
  • 10Xiao L, Umakoshi Y. Materials Science and Engineering[J], 2003, A339(1-2): 63

二级参考文献6

  • 1Xiao L,ASME J Eng Mater Technol,2000年,120卷,42页
  • 2Xiao L,ASME J Eng Mater Technol,1998年,120卷,114页
  • 3Xiao L,Mater Sci Eng,1998年,252卷,166页
  • 4Xiao L,Metall Mater Trans A,1997年,28卷,1021页
  • 5Jiao F,Mater Sci Eng A,1995年,196卷,19页
  • 6Krempl E,ASME J Eng Mater Technol,1984年,106卷,376页

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