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超声辅助旋转车削中刀具磨损的三维有限元模拟

3D FEM simulation of tool wear in ultrasonic assisted rotary turning.

机构信息

Department of Manufacturing, Faculty of Mechanical Engineering, University of Kashan, Kashan, Iran.

Department of Manufacturing, Faculty of Mechanical Engineering, University of Kashan, Kashan, Iran.

出版信息

Ultrasonics. 2018 Aug;88:106-114. doi: 10.1016/j.ultras.2018.03.013. Epub 2018 Mar 21.

Abstract

In this study, a model is developed to predict tool wear and heat distribution on tool faces in conventional, rotary, and ultrasonic assisted rotary tuning methods. To model the flank wear rate, a modified Usui wear rate model which includes tool clearance angle, is proposed. As well as the simulation, a series of experiments is conducted to validate the model, by comparison of the predicted and measured flank wear rates, which are shown to be in good agreement. According to the results of the simulation, localized heat in the tool-chip contact zone during conventional turning is distributed in the circumference of the tool cutting edge in rotary turning. Due to the existence of disengagement periods in ultrasonic-assisted rotary turning, the total time for thermal conduction in the contact zone decreases, resulting in a significant reduction in tool wear.

摘要

本研究旨在为常规、旋转和超声辅助旋转微调方法建立预测刀具磨损和刀具表面热量分布的模型。为了模拟后刀面磨损速率,提出了一种包含刀具后角的改进型Usui 磨损速率模型。通过将预测的和测量的后刀面磨损速率进行比较,对仿真结果进行了一系列实验验证,结果表明两者吻合较好。根据仿真结果,在常规车削过程中,刀具-切屑接触区的局部热量沿旋转车削刀具切削刃的圆周分布。由于在超声辅助旋转微调中存在分离周期,接触区的热传导总时间减少,导致刀具磨损显著降低。

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