Simulation and experimental approach for shot velocity evaluation in ultrasonic shot peening

J. Badreddine, E. Rouhaud, M. Micoulaut, D. Retraint, S. Remy, M. François, P. Viot, G. Doubre-Baboeuf, D. L. Saunier, V. Desfontaine
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引用次数: 23

Abstract

The process of ultrasonic shot peening has been studied from two aspects: (a) a 3D numerical model of shot motion in the peening chamber based on the theory of granular gases, (b) an experimental setup developed for measuring shot velocity distribution in the chamber and impact locations on the peened surface. The aim of such study is to propose an experimental method providing shot trajectories in order to validate the 3D model for the process parameter optimization, used for example in the aeronautic industry. The presented results illustrate the value of the model in the understanding and mastering of the process, as well as its usefulness, on one hand for the design of peening chambers, and on the other hand for a better definition of numerical models that help to predict residual stresses generated in the peened material.
超声喷丸强化中喷丸速度评估的仿真与实验方法
本文从两个方面对超声喷丸强化过程进行了研究:(a)基于颗粒气体理论建立了喷丸腔内弹丸运动的三维数值模型;(b)建立了测量喷丸腔内弹丸速度分布和喷丸表面冲击位置的实验装置。该研究的目的是提出一种提供射击轨迹的实验方法,以验证用于工艺参数优化的3D模型,例如在航空工业中使用。本文的研究结果说明了该模型在理解和掌握喷丸过程中的价值,以及它在喷丸室设计和更好地定义数值模型以帮助预测喷丸材料中产生的残余应力方面的有用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mecanique & Industries
Mecanique & Industries 工程技术-工程:机械
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