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Effects of laser source geometry on laser shock peening residual stress

Authors
Kim, J.H.Kim, Y.J.Kim, J.S.
Issue Date
2012
Keywords
Ablative layer; Dynamic yield strength; FE analysis; Infinite element; Laser source; LSP(Laser shock peening); Plasma; Water tamping layer
Citation
Transactions of the Korean Society of Mechanical Engineers, A, v.36, no.6, pp.609 - 615
Indexed
SCOPUS
KCI
Journal Title
Transactions of the Korean Society of Mechanical Engineers, A
Volume
36
Number
6
Start Page
609
End Page
615
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/110632
DOI
10.3795/KSME-A.2012.36.6.609
ISSN
1226-4873
Abstract
In LSP (laser shock peening) treatment, the laser source geometries when the laser beam strikes the metal target area are diverse. The laser spot geometry affects the residual stress field beneath the treated surface of the metallic materials, which determines the characteristics of the pressure pulse. In this paper, detailed finite-element (fe) simulations on laser shock peening have been conducted in order to predict the magnitude and of the residual stresses and the depth affected in Inconel alloy 600 steel. The residual stress results are compared for circular, rectangular, and elliptical laser spot geometries. It is found that a circular spot can produce the maximum compressive residual stresses near the surface but generates tensile residual stresses at the center of the laser spot. In the depth direction, an elliptical laser spot produces the maxirhum compressive residual stresses. Circular and elliptical spots plastically affect the alloy to higher depths than a rectangular spot. © 2012 The Korean Society of Mechanical Engineers.
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공과대학 (기계공학부)
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