Triangulation partitioning applied in tool path optimization

J. Radej, L. Budin, A. Milanovic
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引用次数: 2

Abstract

Tool path topology is critical to the efficiency and applicability of free form surface machining. Regarding the machining efficiency, neither of the two commonly applied strategies for toll path generation is optimal. Whether the approach is based on generation of isoparametric curves or it exploits the parallel plane intersection curves; the full coverage of the surface can be achieved through the tool path redundancy. Therefore, an optimized tool path generation requires additional toll path adaptation by employment of specific path planning criteria. The proposed optimized approach introduces the adaptive tool path planning applicable for manufacturing of free-form surfaces approximated through triangulation. This paper describes the algorithm created for partitioning of triangulation and successive establishing of surface regions that fully cover entire triangulation and enable the adaptive approach to tool path planing inside the region boundaries.
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三角剖分在刀具轨迹优化中的应用
刀具轨迹拓扑关系到自由曲面加工的效率和适用性。就加工效率而言,两种常用的收费路径生成策略都不是最优的。该方法是基于等参曲线的生成还是利用平行平面相交曲线;通过刀具轨迹冗余,可以实现对工件表面的全覆盖。因此,优化的刀具路径生成需要通过采用特定的路径规划标准来适应额外的收费路径。提出的优化方法引入了适用于加工由三角剖分逼近的自由曲面的自适应刀具轨迹规划。本文描述了三角剖分和连续建立曲面区域的算法,这些曲面区域完全覆盖了整个三角剖分,并在区域边界内实现了自适应的刀具轨迹规划。
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