The Effect of Wire Electrical Discharge Machining on the Fatigue Life of Ti-6Al-2Sn-4Zr-6Mo Aerospace Alloy☆
暂无分享,去创建一个
David K. Aspinwall | Sein Leung Soo | C. Sage | R. Perez | D. Aspinwall | S. Soo | R. Perez | M. Antar | M. Antar | M. Cuttell | A. J. Winn | C. Sage | A. Winn | M. Cuttell | R. Pérez
[1] E. Collings,et al. Materials Properties Handbook: Titanium Alloys , 1994 .
[2] David K. Aspinwall,et al. Electrochemical superabrasive machining of a nickel-based aeroengine alloy using mounted grinding points , 2009 .
[3] Mark Hardy,et al. Modern Machining of Advanced Aerospace Alloys - Enabler for Quality and Performance , 2012 .
[4] Gary R. Halford,et al. Investigation of residual stress relaxation under cyclic load , 2001 .
[5] M. Nakajima,et al. The microstructure dependence of fatigue behaviour in Ti15Mo5Zr3Al alloy , 1996 .
[6] David K. Aspinwall,et al. Fatigue response of Udimet 720 following minimum damage wire electrical discharge machining , 2012 .
[7] David K. Aspinwall,et al. Workpiece surface roughness and integrity after WEDM of Ti–6Al–4V and Inconel 718 using minimum damage generator technology , 2008 .
[8] Philip J. Withers,et al. Relaxation of residual stress in shot peened Udimet 720Li under high temperature isothermal fatigue , 2005 .