期刊文献+

单一取向层片组织TiAl合金缺口敏感性的研究 被引量:3

Notch Sensitivity of Lamellar TiAl Alloys With Monolithic Orientation
原文传递
导出
摘要 通过拉伸试验研究了铸造TiAl合金单一取向层片组织在缺口应力集中系数分别为2、3和4时的缺口敏感性。发现该合金在沿层片界面方向的应力作用下,对应各Kt水平的缺口试样均具有大于光滑试样的抗拉强度,且其缺口敏感系数相当;并根据该合金具有较好的拉伸塑性和缺口拉伸断口上存在裂纹萌生和稳态扩展区域的特征,分析讨论了其形成缺口强化效应的机制。 Notch sensitivity of TiAl alloys containing lamellar microstructure with monolithic orientation was investigated by notch tensile tests at 2,3 and 4 Kt levels.The tensile test results show that all notched specimens exhibited higher ultimate tensile strength than that of un-notched specimens under a load parallel to lamellar interfaces.The sensitivity coefficients calculated from the strength averages are approximate with respect to different Kt levels.Thereafter,the notch strengthening mechanisms are discussed based on tensile plasticity evaluation of the studied alloy and morphology characterization of the fracture surfaces.
出处 《物理测试》 CAS 2010年第2期24-27,31,共5页 Physics Examination and Testing
关键词 TIAL合金 单一取向层片组织 缺口敏感性 TiAl alloy lamellar microstructure with monolithic orientation notch sensitivity
  • 相关文献

参考文献15

  • 1Gilbert Henaff, Anne-Lise Gloanec. Fatigue Properties of TiAl Alloys[J] Intermetallics, 2005(13): 543.
  • 2D A Knaul, J L Beuth, J G Milke. Modeling and Measurement of the Notched Strength of Gamma TiAI Under Monotonic Loading[J]. Metallurgical and Materials Transactions. A. 1999, 30(4):949.
  • 3N Biery, M De Graef and T. M. Pollock. Study of Localized Strain at Notches in Gamma-TiAl Alloys Using Displacement Mapping and Microstructural Characterization[M]. Gamma Titanium Aluminides. TMS. 1999,557.
  • 4J G Milke, J L Beuth, N E Biery, et al. The Effect of Constraint-Induced Normal Stress on the Failure of Notched TiAl Components[J]. Metallurgical and Materials Transactions A. 2002, 33(2)~ 417.
  • 5S J Trail, P Bowen. Effects of Stress Concentrations on the Fatigue Life of a Gamma-Based Titanium Aluminide[J]. Materials Science and Engineering, 1995 (A192/193) : 427.
  • 6S H Chen, D Mukherji, G Schumacher, et al. Microstruetu ral Characterisation of Defect Structures in a TiAl-Base Ti-47Al-2Nb-2Mn(at.%)+0.8vol. %TiB2 Alloy[J]. Materials Science and Engineering A. 2001(300) : 299.
  • 7D Y Seo, L Zhao, J Beddoes. Microstructural Evolution Du ring Heat Treatments in Ti-45 and 47Al-2Nb-2Mn+ 0.8vol.% TiB2 XDTM Alloys[J]. Materials Science and Engineering A, 2002 (329 331): 130.
  • 8Zhang J, Feng D, Zhong Z Y. Intermetallies as Substitutes for Superalloys[J].Acta Metallurgica Sinica. 2005,18(4): 1.
  • 9Zhang J, Li S Q, Zou D X, et al. Recent Advances of Wrought TiAI Alloys[J]. Trans Nonferrous Met Soc China,2002, 12 (4) :591.
  • 10M G Mendiratta, R L Goetz, M D Dimiduk. Notch Fracture in γ-Titanium Aluminides[J]. Metallurgical and Materials Transactions. A. 1996, 27A(12):3903.

同被引文献19

  • 1刘海军,曹睿,何洪,张继,陈剑虹.K418合金缺口敏感性研究[J].稀有金属,2010,34(5):699-704. 被引量:10
  • 2J. Zhang D. Feng Z. Y. Zhong.INTERMETALLICS AS SUBSTITUTES FOR SUPERALLOYS[J].Acta Metallurgica Sinica(English Letters),2005,18(4):463-467. 被引量:3
  • 3王占学.塑性加工金属学[M].北京:冶金工业出版社,1984.
  • 4Schumacher G, Dettenwanger F, Schutze M. Microalloying Effects in the Oxidation of TiAl Materials [J]. Intermetallics, 1999,7(10):1113.
  • 5CAO R, LEI M X, CHEN J H, et al. Effects of Loading Rate on Damage and Fracture Behavior of TiAl Alloys Original Re- search Article [J]. Materials Science and Engineering,2007, 465A(1/2) : 183.
  • 6Pather R, Mitten W A, Holdway P, et al. The Effect of High Temperature Exposure on the Tensile Properties of 7 TiAl Al- loys [J]. Intermetallics,2003,11(10) :1015.
  • 7Yoshiharaa M, Kim Y W. Oxidation Behavior of Gamma Al- loys Designed for High Temperature Applications [J]. Inter- metallics, 2005 ( 13 ) : 952.
  • 8Yoshihara M, Miura K. Effects of Nb Addition on Oxidation Behavior of TiAl Original Research Article [J]. Intermetallics, 1995,3(5) 1357.
  • 9法国[M].菲利普·潘利梅尔[M].上海:上海译文出版社,1980..
  • 10孙林桥 朱林兴.中国农村城市化[M].同济大学出版社,1996..

引证文献3

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部