Numerical study of micro-dimple depth and stress distribution induced by laser shock waves in visco-elasto-plastic materials
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference39 articles.
1. Progressive developments, challenges and future trends in laser shock peening of metallic materials and alloys: a comprehensive review;Deng;Int J Mach Tools Manuf,2023
2. Stress wave propagation and force transmission in polymeric closed cell foams subjected to air shock loading;Wanchoo;Extreme Mech Lett,2023
3. The effect of laser shock peening on very high cycle fatigue properties of laser welded 2A60 aluminum alloy joints;Wen;Eng Fract Mech,2023
4. The effect of material cyclic deformation properties on residual stress generation by laser shock processing;Angulo;Int J Mech Sci,2019
5. Microstructure and residual stress modulation of 7075 aluminum alloy for improving fatigue performance by laser shock peening;Pan;Int J Mach Tools Manuf,2023
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