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Numerical modelling of shot peening process and corresponding products: Residual stress, surface roughness and cold work prediction

机译:喷丸处理及相应产品的数值模拟:残余应力,表面粗糙度和冷加工预测

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摘要

An investigation of the effects of controlled shot peening (CSP) process parameters on the treated material is presented. For this purpose, a three dimensional numerical model is developed, comprising the target plate and a number of shot impacts; their number is defined as the minimum required for a realistic simulation and minimum computational cost. The numerical model is verified by comparing the predicted residual stress (RS) fields to experimental. A parametric study of the shot velocity and impinging angle on the CSP products is performed for 4 shot types, i.e. S110, S230, S330 and S550. The main advantages of the present numerical model are: a) the relatively high number of shots introduced in the simulation compared to other publications that use only one shot, b) the number of shots dependency on the desired coverage, c) the thorough selection of numerical parameters, d) the high-strain rate material behaviour used for the target plate, e) the capability to calculate CSP effects on the target plate as function of coverage, f) the computed data which include RS field, surface roughness, cold work and geometrical stress concentration factor (Kt) and finally g) the computed results which are validated by experimental measurements.
机译:提出了控制喷丸处理(CSP)工艺参数对处理材料的影响的研究。为此,建立了一个三维数值模型,包括目标板和许多击球冲击。它们的数量定义为逼真的仿真所需的最小数量和最小的计算成本。通过将预测的残余应力(RS)场与实验相比较,验证了数值模型。针对4种射击类型(即S110,S230,S330和S550)对CSP产品的射击速度和撞击角度进行了参数研究。当前数值模型的主要优点是:a)与仅使用一个镜头的其他出版物相比,模拟中引入的镜头数量相对较高; b)镜头数量取决于所需的覆盖范围; c)彻底选择数值参数; d)用于靶板的高应变速率材料性能; e)根据覆盖率计算对靶板的CSP效应的能力; f)包括RS场,表面粗糙度,冷加工的计算数据几何应力集中系数(Kt),最后是g)计算结果,这些结果通过实验测量得到了验证。

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