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An algorithm for reducing tool retractions in zigzag pocket machining

机译:减少曲折槽加工中刀具退刀的算法

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An important issue in zigzag pocket machining is to design a machining strategy such that the resulting tool path requires a minimum number of tool retraction motions. The minimization is further classified as either local or global. In a localminimization, the inclination of a zigzag path is given ('priori, and the goal is to partition the planar region to be machined into a minimum number of retraction-free subregions. The global minimization finds an inclination angle such that the localminimization with respect to this inclination is the minimum among all the possible inclination angles. This paper presents simple O(n log n) algorithms for solving both the local and the global minimization problems of a region with holes, where U is the number of line segments or arcs on the boundary of the region. The optimality of the presented algorithms is proved by using geometric analysis.
机译:之字形腔加工中的一个重要问题是设计一种加工策略,以使产生的刀具路径需要最少数量的刀具退刀运动。最小化进一步分为本地或全局。在局部最小化中,给出了锯齿形路径的倾斜度('priori,目标是将要加工的平面区域划分为最小数量的无回缩子区域。整体最小化找到一个倾斜角,使得局部最小化与本文提出了一种简单的O(n log n)算法,用于求解带孔区域的局部和全局最小化问题,其中U是线段数或通过几何分析证明了算法的最优性。

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