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An innovative investigation on chip formation mechanisms in micro-milling using natural diamond and tungsten carbide tools

机译:使用天然金刚石和碳化钨刀具进行微铣削时切屑形成机理的创新研究

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This paper presents an analytical approach to investigating the chip formation process in micro-milling aluminum 6082-T6 particularly by using natural diamond and tungsten carbide tools. Through well designed micro-milling experiments, a comparative study is conducted by utilizing a natural diamond tool with the perfectly sharpened cutting edge and a tungsten carbide tool with the rounded cutting edge respectively. Cutting forces are recorded and analyzed as one of main process indicators. The chip morphology and micro milling processes are analyzed in correlation with cutting force variations in the processes. The size effect, minimum chip thickness and their integral effect are quantitatively assessed against the chip formation process. Research results show that the chips formed during the consecutive revolutions are affected jointly by the cutting tool/workpiece material pair and the cutting edge radius in using tungsten carbide tools; whereas the chips formed by using diamond tools are intact and separate. Furthermore, the cutting force and thrust force are of the same order due to the cutting edge radius cannot be ignored. For using a natural diamond tool with the sharp cutting edge, the resultant cutting force is usually two times higher than the thrust force. (C) 2017 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种分析方法,用于研究微研磨铝6082-T6中的切屑形成过程,特别是通过使用天然金刚石和碳化钨工具。通过精心设计的微铣削实验,通过分别使用具有完美锐利切削刃的天然金刚石刀具和具有圆形切削刃的碳化钨刀具进行对比研究。切削力被记录并分析为主要过程指标之一。分析了切屑的形态和微铣削工艺,并与工艺中的切削力变化相关联。针对切屑形成过程定量评估尺寸效应,最小切屑厚度及其积分效应。研究结果表明,使用碳化钨刀具时,切削刀具/工件材料对和切削刃半径共同影响在连续旋转过程中形成的切屑。而使用金刚石工具形成的切屑是完整且分离的。此外,由于切削刃半径不能忽略,因此切削力和推力处于相同的数量级。对于使用具有锋利切削刃的天然金刚石工具,合成切削力通常是推力的两倍。 (C)2017年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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