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Simulation on Residual Stress Field for Aluminum Alloy 7050-T7451 of Ultrasonic Rolling Process

机译:超声波轧制铝合金7050-T7451残余应力场的模拟

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Ultrasonic rolling is a process of intense plastic deformation rolling under the action of a composite energy field formed by normal static pressure and high-frequency ultrasonic shock coupling. The technology can effectively improve the surface quality of parts. Proper residual compressive stress and its distribution on the machined surface can effectively improve the fatigue strength and corrosion resistance of the workpiece, and then prolong its service life. Applying the finite element software, the contact model of ultrasonic rolling process was built to simulate the ultrasonic rolling process of aluminum alloy 7050-T7451, and the distribution of equivalent plastic strain and residual stress distribution were analyzed effectively. The simulation results showed that ultrasonic rolling process on surface can lead to the more drastic plastic deformation and residual compressive stress. Meanwhile, with the increase of the depth from surface, the residual compressive stresses decreased gradually and easily transformed into residual tensile stress. Eventually, the two stresses can reach the internal balance. All the situational results are agreed with the experimental data, although with a small deviation. It can provide technical support and theoretical basis for optimizing the ultrasonic rolling process parameters.
机译:超声波轧制是在常压和高频超声波冲击耦合作用下形成的复合能场的作用下,发生剧烈塑性变形轧制的过程。该技术可以有效地提高零件的表面质量。适当的残余压应力及其在加工表面上的分布可以有效地提高工件的疲劳强度和耐腐蚀性,从而延长其使用寿命。应用有限元软件,建立了超声轧制过程的接触模型,以模拟铝合金7050-T7451的超声轧制过程,并有效地分析了等效塑性应变分布和残余应力分布。仿真结果表明,表面超声轧制可导致更大的塑性变形和残余压应力。同时,随着离表面深度的增加,残余压应力逐渐减小,并容易转化为残余拉应力。最终,这两个压力可以达到内部平衡。所有情况的结果都与实验数据相符,尽管偏差很小。为优化超声轧制工艺参数提供技术支持和理论依据。

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