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Coupled thermo-mechanical simulations of shot impacts: Effects of the temperature on the residual stress field due to shot-peening

机译:喷丸冲击的热力学耦合模拟:喷丸硬化对残余应力场的温度影响

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摘要

Shot-peening is an industrial surface treatment used to improve fatigue life of mechanical components. This process generates a compressive residual stress field on the part's surface and offers a protection against crack initiation and propagation, corrosion, etc. Although the consequences of the process on fatigue life are well known, the physical influence of the relevant parameters is not fully understood. Few of the existing shot-peening models are thus able to reproduce the correct residual stress field obtained via the actual process. This paper presents a finite element simulation of an impact including thermo-mechanical effects to investigate the influence of temperature on the residual stress field obtained through shot-peening. The influence of parameters of the process such as velocity, radius and hardness of the shot has also been studied in relation with thermal effects. It is observed that the temperature can reach 200℃ in the material. Further, the temperature significantly affects the residual stress field for high shot velocities. It can be concluded that shot-peening is a complex combination of physical processes, including thermal effects, which should be taken into account to better master this manufacturing process.
机译:喷丸处理是一种工业表面处理,用于改善机械部件的疲劳寿命。该过程会在零件表面产生压缩残余应力场,并提供防止裂纹萌生和蔓延,腐蚀等的保护作用。尽管该过程对疲劳寿命的影响是众所周知的,但相关参数的物理影响尚不完全清楚。因此,很少有现有的喷丸强化模型能够再现通过实际过程获得的正确残余应力场。本文提出了一种包括热机械效应的冲击的有限元模拟,以研究温度对喷丸硬化后残余应力场的影响。还已经研究了与热效应有关的工艺参数的影响,例如射速,半径和硬度。观察到材料中的温度可以达到200℃。此外,温度显着影响高射速的残余应力场。可以得出结论,喷丸硬化是物理过程(包括热效应)的复杂组合,应将其考虑在内以更好地掌握该制造过程。

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