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Fracture Assessment for Electron Beam Welded Damage Tolerant Ti-6Al-4V Alloy by the FITNET Procedure[J]. LU Wei,SHI Yaowu,LI Xiaoyan,LEI Yongping.Chinese Journal of Mechanical Engineering. 2013(05)
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The effect of microstructure on the mechanical properties of TC4-DT titanium alloys[J] . Ping Guo,Yongqing Zhao,Weidong Zeng,Quan Hong.Materials Science & Engineering A . 2013
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A unified method of design for fatigue crack growth resistance in structural materials[J] . Anastasios G. Gavras,Diana A. Lados,J. Keith Donald.International Journal of Fatigue . 2013
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A comparative study between a small time scale model and the two driving force model for fatigue analysis[J] . Zizi Lu,Yongming Liu.International Journal of Fatigue . 2011
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Defect tolerance of a gamma titanium aluminide alloy[J] . M. Filippini,S. Beretta,L. Patriarca,G. Pasquero,S. Sabbadini.Procedia Engineering . 2011
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Effects of the heterogeneity in the electron beam welded joint on fatigue crack growth in Ti–6Al–4V alloy[J] . Xingzhi Li,Shubing Hu,Jianzhong Xiao,Longbo Ji.Materials Science & Engineering A . 2011
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A study of the stress ratio effects on fatigue crack growth using the unified two-parameter fatigue crack growth driving force[J] . A.H. Noroozi,G. Glinka,S. Lambert.International Journal of Fatigue . 2007 (9)
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A two parameter driving force for fatigue crack growth analysis[J] . A.H. Noroozi,G. Glinka,S. Lambert.International Journal of Fatigue . 2005 (10)
[10]
Effects of various environments on fatigue crack growth in Laser formed and IM Ti–6Al–4V alloys[J] . E.U. Lee,A.K. Vasudevan,K. Sadananda.International Journal of Fatigue . 2005 (10)