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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Study on Edge Chipping in Rotary Ultrasonic Machining of Ceramics: An Integration of Designed Experiments and Finite Element Method Analysis
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Study on Edge Chipping in Rotary Ultrasonic Machining of Ceramics: An Integration of Designed Experiments and Finite Element Method Analysis

机译:陶瓷旋转超声加工中的切屑研究:设计实验与有限元方法分析的结合

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摘要

Rotary ultrasonic machining (RUM) is a relatively low cost and environmentally benign process for machining of advanced ceramics. Much effort has been made to theoretically and experimentally investigate material removal rate, surface roughness, and tool wear in RUM. However, there is no report on systematic study of edge chipping in RUM drilling of ceramics. This paper presents the results of a study on edge chipping in RUM drilling of advanced ceramics. The study is conducted by an integrated approach, combining designed experiments and FEM (finite element method) analysis. The designed experiments will reveal the main effects as well as interaction effects of process variables (spindle speed, ultrasonic power, feedrate, and grit size) on cutting force and chipping thickness. FEM simulations will provide the stress and strain distributions in the work-piece while being drilled by RUM. Furthermore, the relationship between chipping thickness and cutting force obtained from the FEM simulations will be compared with that obtained from the designed experiments.
机译:旋转超声加工(RUM)是一种成本较低且对环境无害的先进陶瓷加工方法。在理论上和实验上,已经做了很多努力来研究RUM中的材料去除率,表面粗糙度和工具磨损。但是,尚无关于RUM陶瓷钻削边缘切屑的系统研究的报道。本文介绍了高级陶瓷RUM钻削中的边缘崩刃研究的结果。这项研究是通过综合方法进行的,结合了设计的实验和FEM(有限元方法)分析。设计的实验将揭示工艺变量(主轴转速,超声功率,进给速度和粒度)对切削力和切屑厚度的主要影响以及相互作用影响。有限元模拟将在RUM钻孔时提供工件中的应力和应变分布。此外,将从有限元模拟中获得的切屑厚度与切削力之间的关系与从设计实验中获得的关系进行比较。

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