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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Linking tool paths generated with different offset distances for edge quality enhancement in planar milling
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Linking tool paths generated with different offset distances for edge quality enhancement in planar milling

机译:链接以不同偏置距离生成的刀具路径,以提高平面铣削的边缘质量

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摘要

Edge quality can be effectively enhanced in planar milling by preventing the tool from exiting the work part. This is achieved by planning of tool paths offset from the part edges with appropriate distances. Two consecutive edges may require different offset distances to avoid the tool exit occurring around the joined vertex. Linking such tool paths is problematic and has not been studied. This paper presents a systematic approach to solving this problem. All geometric configurations of consecutive offset edges are recognized, simplified and classified into four groups. Corresponding algorithms consisting of three basic geometric operations (connect, trim, and extend) are developed for each group. The extra paths added in the linking process are analysed and the results show that they do not induce unfavorable end conditions such as sharp turns, overextended paths or introduction of unexpected tool exits. This work overcomes the deficiency of previous studies and completes the tool path planning for enhancement of machining edge quality.
机译:通过防止刀具离开工件,可以在平面铣削中有效地提高边缘质量。这可以通过规划从零件边缘偏移适当距离的刀具路径来实现。两个连续的边可能需要不同的偏移距离,以避免在结合的顶点周围发生刀具退出。链接此类工具路径存在问题,尚未进行研究。本文提出了解决此问题的系统方法。识别,简化并连续偏移边缘的所有几何配置分为四组。为每个组开发了由三个基本几何运算(连接,修剪和扩展)组成的对应算法。分析了在链接过程中添加的额外路径,结果表明它们不会引起不利的最终条件,例如急转弯,过度延伸的路径或引入意外的刀具出口。这项工作克服了先前研究的不足,并完成了用于增强加工边缘质量的刀具路径规划。

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