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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Generating gouge-free tool paths for ball-end cutter CNC milling of cloud of point by projecting guide curves
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Generating gouge-free tool paths for ball-end cutter CNC milling of cloud of point by projecting guide curves

机译:通过突出指南曲线为球端切割器CNC铣削发电机铣刀的无凿刀路径

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摘要

This paper presents a gouge-free tool path generation method for direct ball-end cutter CNC milling of cloud of point. In this method, a base surface with simple geometry, which can approximately reflect the features and the changes of surface shape, is first constructed, and the guide curves with different patterns of the cutter motion are then planned on it. After the cloud of point is offset by a distance of the ball-end cutter radius, the guide curves are deformed onto the offset of cloud of point by point projection operation along the computed direction instead of the traditional z-axis direction, thereby forming the desired tool paths directly on the cloud of point. In projecting guide curves, the computation of the projecting direction and construction of the weight function are discussed in detail to eliminate the projection error as much as possible. The technique of adjusting the path points is also presented to eliminate the unfavorable undercuts and overcuts. Since the cloud of point is offset a distance of the cutter radius, the gouge between the cutter and the point set surface can be automatically avoided. Also, various patterns of the cutter motion can be conveniently planned on the simple base surface, such that the cloud of point can be milled along the generated tool paths with the most suitable topology. Finally, several examples are given to validate the proposed method.
机译:本文介绍了一种用于直接球铣刀CNC铣削点的直接球铣刀的刨刺刀路径。在该方法中,首先构造具有简单几何形状的基面,其近似反射特征和表面形状的变化,然后打开刀具运动的不同图案的引导曲线。点云偏移到球端切割器半径的距离之后,通过沿着计算的方向而不是传统的z轴方向使引导曲线变形到点的点云的偏移点上,而不是传统的z轴方向,从而形成期望的刀具路径直接在点云上。在突出引导曲线中,详细讨论了突出方向和重量函数的构造的计算,以尽可能地消除投影误差。还提出了调整路径点的技术以消除不利的底切和过度。由于点的云偏移了切割器半径的距离,因此可以自动避免切割器和点组表面之间的凿孔。而且,可以在简单的基础表面上方便地计划切割器运动的各种图案,使得点沿着具有最合适的拓扑的产生的工具路径铣削云。最后,给出了几个例子来验证所提出的方法。

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