Most efficient tool feed direction in three‐axis CNC machining

Zezhong C. Chen, Z. Dong, G. W. Vickers
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引用次数: 15

Abstract

The objective of CNC machining is to produce mechanical parts with designed quality most efficiently. To generate CNC tool paths for machining a sculptured part using a three‐axis CNC machine, surface geometry, cutter shape and size, as well as tool path interval and direction need to be considered. In this work, the relation between the direction of a tool motion and cutting efficiency is studied. A new measure of cutting efficiency in three‐axis CNC milling – the length of effective cutting edge (ECE) is introduced. The ECE length is mathematically proven to reach its maximum when the tool cuts a sculptured surface along its steepest tangent direction at the cutter contact point. The steepest tangent direction is thus proven to be the most efficient tool feed direction in three‐axis sculptured part machining. The study identifies tool feed direction as a new control parameter in CNC tool path planning, and forms the foundation for further research on three‐axis tool path generation of sculptured parts.
三轴数控加工中最有效的刀具进给方向
数控加工的目标是最有效地生产出具有设计质量的机械零件。为了使用三轴数控机床生成加工雕刻零件的数控刀具轨迹,需要考虑表面几何形状、刀具形状和尺寸以及刀具轨迹间隔和方向。在这项工作中,研究了刀具运动方向与切削效率的关系。介绍了一种新的三轴数控铣削效率测量方法——有效切削刃长度(ECE)。经数学证明,当刀具在刀具接触点沿最陡切线方向切割雕刻表面时,ECE长度达到最大值。因此,在三轴雕刻零件加工中,最陡切线方向被证明是最有效的刀具进给方向。该研究将刀具进给方向作为数控刀具轨迹规划的一个新的控制参数,为进一步研究加工零件的三轴刀具轨迹生成奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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