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RESIDUAL STRESS INDUCED BY WATERJET PEENING: A FINITE ELEMENT ANALYSIS

机译:Waterjet Peening引起的残余应力:有限元分析

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The concept of multiple droplet impacts resulting from ultra high-pressure waterjet (UHPWJ) was used to develop a mathematical model to describe the effect of interfacial pressure on the underlying workpiece material. A non-linear elastic-plastic finite element analysis (FEA) was carried out in this study using the interfacial pressure model to predict residual compressive stresses. This three-dimensional FEA model was based on quasi-static considerations to provide prediction of both magnitude and depth of residual stress fields in a 7075-T6 aluminum alloy (A17075-T6). Results of the FEA modeling were in good agreement with experimental measurements. Effects of applied pressures on the residual stress fields are also presented and discussed as a method of estimating high-pressure waterjet induced compressive stresses under varying process conditions for peening.
机译:由超高压水射流(UHPWJ)产生的多滴冲击的概念用于开发数学模型,以描述界面压力对底层工件材料的影响。在该研究中,使用界面压力模型进行了非线性弹性塑料有限元分析(FEA)以预测残留压缩应力。该三维FEA模型基于准静态考虑,提供了7075-T6铝合金(A17075-T6)中的残余应力场的幅度和深度的预测。 FEA建模的结果与实验测量有关。还提出和讨论了应用压力对残余应力场的影响作为估计高压水射流诱导的压缩压力,该方法在不同的过程条件下进行喷丸。

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