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Modelling of the Mechanical Response in 304 Austenitic Steel during Laser Shock Peening and Conventional Shot Peening

机译:激光休克喷丸期间304奥氏体钢机械响应的建模与常规喷丸

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Laser Shock Peening (LSP) and conventional Shot Peening (SP) are processes that aim to improve the surface properties of a workpiece by inducing compressive residual stresses. The peening processes also cause martensitic phase transformation in austenitic steels. Interestingly, experimental studies report significant differences in martensite content depending on the used peening process. This study aims to present numerical simulations of both peening processes. The study is based on a constitutive model which considers rate-dependent elasto-viscoplastic behaviour allowing for martensitic transformation. The results show the influence of spot size, laser pulse duration and laser intensity on the mechanical response. The differences in martensite content are investigated in terms of the corresponding transformation and yield surface evolution. The main finding of the study is an explanation for the significantly higher amount of martensite that is found after SP in comparison to LSP. It has been found that the main reason is not the intensity, but the stress trajectory in the stress space, which is inherently different between the two processes.
机译:激光冲击喷丸(LSP)和常规喷丸(SP)是通过诱导压缩残余应力来改善工件的表面性质的过程。喷丸过程也引起奥氏体钢中的马氏体相变。有趣的是,实验研究报告了根据二手喷丸过程的马氏体含量的显着差异。本研究旨在呈现Peening过程的数值模拟。该研究基于组成型模型,其考虑含量依赖性的弹性粘塑料行为,允许马氏体转化。结果表明光斑尺寸,激光脉冲持续时间和激光强度对机械响应的影响。在相应的转化和屈服表面演化方面研究了马氏体含量的差异。该研究的主要发现是对与LSP相比,SP之后发现的明显较高的马氏体的解释。已经发现主要原因不是强度,而是压力空间中的应力轨迹,这两种过程之间固有不同。

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