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Modeling, simulation, and prediction of surface topography in two-dimensional ultrasonic rolling 7075 Al-alloy

机译:二维超声轧制7075铝合金表面形貌的建模,仿真与预测

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摘要

Two-dimensional ultrasonic rolling (TDUR) is a kind of surface finishing and deformation strengthening technology, which can improve the surface quality and reduce the surface roughness of the workpiece so as to improve its fatigue resistance. In order to study the formation process of the surface topography of 7075 Al-alloy treated by TDUR, a dynamic model of the rolling system was established based on the principle of TDUR to obtain the dynamic force of the roller on the workpiece during the rolling process. The penetration depth model of the workpiece surface under the action of the static load and longitudinal ultrasonic impact was constructed based on the Hertz contact theory and the metal elastic-plastic deformation theory. Then, the simulation model of surface topography was established using the space transformation theory based on the penetration depth model and the trajectory of the roller. Sequentially, the surface topography was reconstructed with the Z-map method. Using the simulation results, the axial profile curve data was extracted, and the surface roughness was calculated by the surface roughness calculation model. Finally, a designed TDUR experiment was carried out to verify the theoretical surface topography and roughness models. And it shows that the simulated surface topography and predicted roughness are in good agreement with the experimental results. The maximum relative error between the predicted roughness and the experimental results is no more than 9%. Under the experimental conditions, the turning marks can be almost eliminated when the static load F-s is 215 N. At this time, the surface profile height was about 1.5 mu m, and the roughness Ra is 0.413 mu m, which is 78% lower than that of turning. Therefore, the surface topography and surface roughness models proposed in this work can be used to effectively predict the surface topography and surface roughness of 7075 Al-alloy treated by TDUR.
机译:二维超声滚压(TDUR)是一种表面精加工和变形强化技术,可以改善工件的表面质量,降低表面粗糙度,从而提高其抗疲劳性能。为了研究经TDUR处理的7075铝合金表面形貌的形成过程,基于TDUR原理建立了轧制系统的动力学模型,获得了轧制过程中轧辊对工件的动态力。基于赫兹接触理论和金属弹塑性变形理论,建立了静载荷和纵向超声冲击作用下工件表面的穿透深度模型。然后,基于穿透深度模型和压路机轨迹,利用空间变换理论建立了表面形貌仿真模型。随后,用Z-map方法重建表面形貌。利用仿真结果提取轴向轮廓曲线数据,并利用表面粗糙度计算模型计算表面粗糙度。最后,通过设计的TDUR实验验证了理论表面形貌和粗糙度模型。结果表明,模拟的表面形貌和预测的粗糙度与实验结果吻合较好。预测的粗糙度与实验结果之间的最大相对误差不超过9%。在实验条件下,当静载荷F-s为215N时,车削痕迹几乎可以消除。此时,表面轮廓高度约为1.5μm,粗糙度Ra为0.413μm,比车削时低78%。因此,本文提出的表面形貌和表面粗糙度模型可以有效地预测经TDUR处理的7075铝合金的表面形貌和表面粗糙度。

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