Publication | Closed Access
Numerical Study of Laser Shock Peening Effects on Alloy 600 Nozzles With Initial Residual Stresses
19
Citations
14
References
2017
Year
EngineeringSevere Plastic DeformationMechanical EngineeringResidual StressWork HardeningResidual StressesInitial Residual StressMechanics ModelingNumerical StudyMechanicsStressstrain AnalysisSolidificationDeformation ModelingShock CompressionMaterials ScienceLaser Processing TechnologyInitial Residual StressesMicrostructureAlloy 600Mechanics Of MaterialsHigh Strain Rate
This paper investigates the effect of initial residual stress and prestrain on residual stresses due to laser shock peening for Alloy 600 using numerical simulation. For simulation, the strain rate dependent Johnson–Cook hardening model with a Mie–Grüneisen equation of state is used. Simulation results are compared with published experimental data, showing good agreement. It is found that the laser shock peening (LSP) process is more effective for higher initial tensile residual stress and for larger initial prestrain in terms of compressive stress at the near surface. However, the effective depth decreases with increasing initial tensile residual stress and initial prestrain.
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