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A numerical model to predict residual stresses induced by ultrasonic shot peening treatment of Inconel 600

机译:一种预测超声波喷丸处理诱导的抵抗600的残留应力的数值模型

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During a repair welding process, the ultrasonic shot peening (USP) process can be used as the final finishing step. The aim is to introduce compressive residual stresses on the surface of the welded area in order to prevent the occurrence of cracking. Although the numerical simulation method is able to predict the state of residual stress in the peened part, the 3D models of the real USP process, in which many successive and shifted impacts take place, is very delicate and costly in terms of computing time and memory space required. In this paper, we propose a method based first on the calculation of the averaged inelastic strain tensor in a local representative area, and second on the transfer of this inelastic strain field in order to simulate the USP process. Experiments, similar to the "Almen test", are performed on a thin plate of Inconel 600. Numerical results in terms of distortions and residual stresses are compared with the experimental data.
机译:在修复焊接过程中,超声波喷丸喷丸(USP)工艺可用作最终整理步骤。目的是在焊接区域的表面上引入压缩残余应力,以防止发生裂缝。尽管数值模拟方法能够预测Peened部分中的残余应力状态,但是真实USP过程的3D模型,其中发生了许多连续和移动的影响,在计算时间和内存方面非常细腻且昂贵需要空间。在本文中,我们提出了一种基于局部代表区域的平均非弹性应变张量的方法,第二在该无弹性应变场的转移中以模拟USP过程。类似于“Almen测试”的实验在Inconel 600的薄板上进行。与实验数据进行比较失真和残余应力的数值结果。

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