Effect of the initial microstructure on the residual stress in the 20Cr2Ni4 gear steel subjected to laser shock peening and shot peening
HE Guoqi
XIE Yuanhao
HE Ying
ZOU Simin
WU Xu
PENG Lingjie
LUO Jiaqiang
Abstract:[Objective]The influence of the initial surface topography on the residual compressive stress distribution along the depth direction of targets under laser shock peening(LSP)and shot peening(SP)processes was investigated.[Methods]A finite element model for the composite strengthening of 20Cr2Ni4 gear steel was established using the finite element software.Simulation analyses were conducted on the surface of this model for laser shock peening,shot peening,and composite strengthening respectively under different initial topographical conditions.[Results]The results indicate that,with the increase of initial surface roughness,the peak residual compressive stress and stress layer depth along the depth direction of the target decrease under SP.In contrast,no significant variation in the stress layer depth under LSP is found.Under combined the strengthening,the residual compressive stress distribution shows distinctive segmented combination characteristics along the depth direction.Notably,the depth of the compressive stress layer is reached to three times that of SP,and the peak residual compressive stress is doubled compared to LSP.Compared to LSP alone,the internal stress layer depth is decreased from 0.42 mm to 0.36 mm(a 14.3%reduction)after the combined strengthening.Additionally,higher peak residual compressive stress is achieved and the adverse effects of initial surface roughness on stress distribution are mitigated by the combined strengthening.
Keywords:Laser shock peeningShot peeningResidual stressNumerical simulationCompound strengthening
Publication Date:2025-05-15
Online Publishing Date:2026-09-12(First online date of this platform, not the publication date of the document)
Pages:8( 101-108 )
Journal of Mechanical Transmission

Journal of Mechanical Transmission

ISTICPKU
ISSN:1004-2539
Year, Vol.(Issue):2025,49(5)