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A smooth spiral tool path for high speed machining of 2D pockets

机译:用于2D腔高速加工的平滑螺旋刀具路径

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摘要

We introduce a new algorithm for generating a spiral tool path for high-speed machining of pockets without islands. The pocket may be an arbitrary simply-connected 2D shape bounded by straight-line segments and circular arcs. The tool path is generated by interpolating growing disks placed on the medial axis of the pocket. It starts inside the pocket and spirals out to the pocket boundary. The tool path is guaranteed to be free of self-intersections and allows machining of the pocket without tool retractions. The start point of the spiral may be chosen freely by the user anywhere within the pocket. Most importantly, the spiral tool path complies with a user-specified maximum cutting width. The output of our algorithm is a g{sup}1 -continuous spiral path. However, in a post-processing step, a properly adapted variant of the recent "POWERAPX" package [Heimlich M, Held M. Biarc approximation, simplification and smoothing of polygonal curves by means of Voronoi-based tolerance bands. International Journal of Computational Geometry & Applications 2008;18(3):221-50] can be used to boost the tool path to C{sup}2-continuity. Our new algorithm was implemented and tested successfully on real-world data. We conclude our paper by an analysis of sample tool paths produced by our implementation.
机译:我们介绍了一种新算法,该算法可生成螺旋刀具路径,以进行无岛腔的高速加工。袋可以是由直线段和圆弧界定的任意简单连接的2D形状。通过插入放置在型腔中轴线上的生长盘来生成刀具路径。它开始在口袋内,然后螺旋形延伸到口袋边界。确保刀具路径没有自相交,并允许在没有刀具缩回的情况下加工型腔。使用者可以在口袋内的任意位置自由选择螺旋线的起点。最重要的是,螺旋刀具路径符合用户指定的最大切削宽度。我们算法的输出是g {sup} 1-连续螺旋路径。但是,在后期处理步骤中,对最近使用的“ POWERAPX”程序包进行了适当调整的变体[Heimlich M,Held M. Biarc逼近,简化和通过基于Voronoi的公差带对多边形曲线进行平滑处理。国际计算几何与应用杂志2008; 18(3):221-50]可用于将工具路径提升到C {sup} 2-连续性。我们的新算法已在实际数据上实现并成功测试。我们通过对实现中产生的示例工具路径的分析来总结本文。

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