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Volume 11 Issue 2
Nov.  2021
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Article Contents
Xie Xishan, Chen Guoliang, Jiang Honggen, Zhang Hongxue, Fang Xiaoguang, Zhao Yucai, Chu Jianzhong. Notch Effect on Fatigue and Creep/Fatigue Interaction Properties of GH132 Disk Superalloy[J]. Chinese Journal of Engineering, 1989, 11(2): 130-135. doi: 10.13374/j.issn1001-053x.1989.02.023
Citation: Xie Xishan, Chen Guoliang, Jiang Honggen, Zhang Hongxue, Fang Xiaoguang, Zhao Yucai, Chu Jianzhong. Notch Effect on Fatigue and Creep/Fatigue Interaction Properties of GH132 Disk Superalloy[J]. Chinese Journal of Engineering, 1989, 11(2): 130-135. doi: 10.13374/j.issn1001-053x.1989.02.023

Notch Effect on Fatigue and Creep/Fatigue Interaction Properties of GH132 Disk Superalloy

doi: 10.13374/j.issn1001-053x.1989.02.023
  • Received Date: 1987-03-10
    Available Online: 2021-11-15
  • Iron-base disk superalloy GH132 is susceptible to LCF notchsensitivity,even it has no stress rupture notch sensitivity at elevated temperature. The creep/fatigue interaction lives to fracture of GH132 for notch and smooth specimens both exist "nose" curves with maximum lives to fracture. In the regime above the "nose" alloy is susceptible to notch sensitivity. Below and near the "nose" regime, lives to fracture of notch specimens are longer than smooth specimens. For turbine disk alloy development is nesessary to raise the strength and to improve the ductility both.

     

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