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Application of the FEM for the prediction of the surface layer characteristics after shot peening

机译:有限元法在喷丸后表面层特性预测中的应用

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摘要

A finite element (FE) simulation model is presented in order to serve as a fast prediction tool for the surface layer characteristics after shot peening. This includes a FE-geometry model and an elasto-viscoplastic combined isotropic kinematic material. For the detailed validation of its applicability simulated and experimentally measured topographies and residual stresses on plates of AISI 4140 in a quenched and tempered state after single and double impacts of large hardened steel balls will be compared. These large shot experiments allow a high resolution of the residual stress state of single dimples by X-ray measurements and eliminate the statistical influence of multiple impacts. Finally the residual stress profiles of differently shot peened samples of the same material will be compared with accordingly simulated results.
机译:提出了有限元(FE)仿真模型,以用作喷丸后表面层特性的快速预测工具。这包括有限元几何模型和弹塑性粘塑性各向同性运动学材料。为了详细验证其适用性,将比较大型淬火钢球单次和两次撞击后在淬火和回火状态下模拟和实验测量的形貌和AISI 4140板上的残余应力。这些大型实验可以通过X射线测量来高分辨率分辨单个酒窝的残余应力状态,并消除多次撞击的统计影响。最后,将相同材料的不同喷丸处理样品的残余应力曲线与相应的模拟结果进行比较。

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