超精密金刚石车削的刀具轨迹生成:最新进展

IF 2.7
Hu Gong , Shengjun Ao , Kuntao Huang , Yi Wang , Changya Yan
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引用次数: 16

摘要

随着光学复杂表面零件市场需求的不断增加,多轴超精密单点金刚石车削的应用越来越多。刀具轨迹生成方法对缩短加工时间、提高表面质量和降低成本具有重要意义。与传统多轴铣削的刀路生成相比,超精密单点金刚石车削的刀路生成要求更高的计算精度和效率。本文综述了超精密金刚石车削的刀具轨迹生成,并考虑了刀具位置点计算、刀具轨迹拓扑形式、插补方式和G代码优化等关键问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tool path generation of ultra-precision diamond turning: A state-of-the-art review

With the increasing market demand for optical complex surface parts, the application of multi-axis ultra-precision single-point diamond turning is increasing. A tool path generation method is very important to decrease manufacturing time, enhance surface quality, and reduce cost. Compared with the tool path generation of the traditional multi-axis milling, that of the ultra-precision single-point diamond turning requires higher calculation accuracy and efficiency. This paper reviews the tool path generation of ultra-precision diamond turning, considering several key issues: cutter location (CL) points calculation, the topological form of tool path, interpolation mode, and G code optimization.

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