A finite element analysis of thermal relaxation of residual stress in laser shock processing Ni-based alloy GH4169

Author:

Ren X.D.,Zhan Q.B.,Yuan S.Q.,Zhou J.Z.,Wang Y.,Ren N.F.,Sun G.F.,Zheng L.M.,Dai F.Z.,Yang H.M.,Dai W.J.

Funder

National Natural Science Foundation of China

Publisher

Elsevier BV

Subject

Applied Mathematics,General Mathematics

Reference21 articles.

1. Prevey P, Hornbach D, Mason P. Thermal residual stress relaxation and distortion in surface enhanced gas turbine engine components. In: Proceedings of the 17th heat treating society conference and exposition and the 1st international induction heat treating symposium. Park, OH: ASM Materials; 1998. p. 3–12.

2. Paul SP, Lambda R, Michael JS. The effect of low plasticity burnishing (LPB) on the HCF performance and FOD resistance of Ti–6Al–4V. In: Proceedings: 6th national turbine engine high cycle fatigue (HCF) conference. Jacksonville, FL; 2001.

3. Laser shock processing and its effects on microstructure and properties of metal alloys: a review;Charles;Int J Fatigue,2002

4. Material model validation for laser shock peening process simulation;Amarchinta;Modell Simul Mater Sci Eng,2009

5. Influence of temperature and time on the stress relaxation process of shot peened IN 100 superalloys;Masmoudi;Mater Tech (Paris),1989

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