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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Tool path planning for five-axis flank milling with developable surface approximation
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Tool path planning for five-axis flank milling with developable surface approximation

机译:可扩展曲面逼近的五轴侧面铣削的刀具路径规划

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摘要

This paper presents a novel approach that automatically generates an interference-free tool path for five-axis flank milling of a ruled surface. A boundary curve of the machined surface is subdivided into curve segments. Each segment works as a guide curve in the design method for developable Bezier surface that controls a developable patch for approximating the surface with available degrees of freedom. Geometric algorithms are proposed for calculating consecutive patches with G{sub}1 continuity across the patch boundary. A tapered tool can move along the rulings of these patches without inducing local tool interference as a result of their developability. The machining deviation is controlled by the surface approximation error. A machining test is conducted with the generated CL data and the result verifies the feasibility of the proposed approach. This work successfully transforms avoidance of tool interference into a geometric modeling problem and provides a simple solution. It thus demonstrates a good potential for the developable surface theory of five-axis flank machining.
机译:本文提出了一种新颖的方法,该方法可自动生成用于直纹曲面的五轴侧面铣削的无干扰刀具路径。加工表面的边界曲线细分为曲线段。在可展的Bezier曲面的设计方法中,每个线段均作为引导曲线,该曲面控制可展的贴片,以可用的自由度近似曲面。提出了几何算法来计算在面片边界上具有G {sub} 1连续性的连续面片。锥形工具可以沿着这些补丁的规则移动,而不会由于其可开发性而引起局部工具干扰。加工偏差由表面近似误差控制。利用生成的CL数据进行了机加工测试,结果验证了该方法的可行性。这项工作成功地将避免工具干扰转化为几何建模问题,并提供了一种简单的解决方案。因此,它为五轴侧面加工的可扩展表面理论展示了良好的潜力。

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