Experimental study and fatigue life prediction on high cycle fatigue performance of laser-peened TC4 titanium alloy
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference42 articles.
1. Surface characteristics and fatigue behavior of shot peened Inconel 718;Klotz;Int. J. Fatig.,2018
2. Influence of low-plasticity ball burnishing on the high-cycle fatigue strength of medium carbon AISI 1045 steel;Avilés;Int. J. Fatig.,2013
3. Effect of shot-peening and low-plasticity burnishing on the high-cycle fatigue strength of DIN 34CrNiMo6 alloy steel;Avilés;Int. J. Fatig.,2019
4. On the effect of deep-rolling and laser-peening on the stress-controlled low- and high-cycle fatigue behavior of Ti-6Al-4V at elevated temperatures up to 550 °c;Altenberger;Int. J. Fatig.,2012
5. High cycle fatigue performance in laser shock peened TC4 titanium alloys subjected to foreign object damage;Luo;J. Mater. Eng. Perform.,2018
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1. FEM-ANN coupling dynamic prediction of residual stresses induced by laser shock peening of TC4 titanium alloy;Optics & Laser Technology;2024-12
2. Optimized mechanical properties of the hot forged Ti–6Al–4V alloy by regulating multiscale microstructure via laser shock peening;International Journal of Machine Tools and Manufacture;2024-10
3. Deformation mechanism and life prediction model of titanium alloy laser-arc hybrid welded joint during fatigue;Thin-Walled Structures;2024-09
4. Investigation on the Very High Cycle Fatigue Life of Titanium Alloys by Near-β Forging and Shot Peening;Acta Mechanica Solida Sinica;2024-07-30
5. Spatial-temporal characteristics analysis of laser-induced shockwave pressure by reverse optimization with multi-island genetic algorithm;Journal of Laser Applications;2024-07-19
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