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Investigation into contributions of static and dynamic loads to compressive residual stress fields caused by ultrasonic surface rolling

机译:超声波表面滚动引起的压缩残余应力场的静态和动态载荷贡献的调查

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摘要

A compressive residual stress field caused by ultrasonic surface rolling process is produced due to association of both the static and dynamic loads. The present work is an analytical approach to finding contributions of static and dynamic loads to this field. This study considered various rolling parameters and material properties based on a rectangular Hertz contact area. In the ultrasonic-rolling simulation, a quasi-static model and a dynamic model were developed based on the effects of strain hardening and strain rate hardening, respectively. Moreover, in order to validate the proposed analytical approach, experimental verification was carried out on the Al6061-T6 aluminum alloy. By investigating rolling parameters such as rolling depth, radius of tool tip, linear velocity of tool tip, friction coefficient, amplitude and frequency, relationships between external loads and those parameters were established and contributions of static and dynamic loads to this field were also found out. Finally, an approach to effective enlargement of compressive residual stress field was obtained based on the finding results.
机译:由于静态和动态载荷的关联而产生由超声波表面轧制工艺引起的压缩残余应力场。目前的作品是一种发现静态和动态负荷对此字段的贡献的分析方法。本研究考虑了基于矩形赫兹接触面积的各种轧制参数和材料特性。在超声波轧制仿真中,基于应变硬化和应变速率硬化的影响开发了准静态模型和动态模型。此外,为了验证所提出的分析方法,在AL6061-T6铝合金上进行实验验证。通过研究轧制参数,例如轧制深度,刀尖半径,刀尖的线速度,摩擦系数,幅度和频率,建立了外部负载之间的关系,并且还发现了对该字段的静态和动态负载的贡献。最后,基于发现结果获得了有效扩大压缩残余应力场的方法。

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