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Region-Based Efficient Computer Numerical Control Machining Using Point Cloud Data

机译:基于区域的高效计算机数控加工使用点云数据

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This paper presents an efficient tool path planning strategy for three-axis computer numeric control (CNC) machining using curvature-based segmentation (CBS) of freeform surface from its representation in the form of a point cloud. Curvature parameters estimated over the point data are used to partition the surface into convex, concave, and saddle-like regions. Grid-based adaptive planar tool path planning strategy is developed to machine each region separately within its boundaries. In addition to the region-by-region machining, a strategy to stitch the obtained regions is also developed to minimize the tool lifts and tool marks. The developed region-based tool path planning strategy is compared with the point-cloud-based adaptive planar strategy, iso-scallop strategy, and commercial software for parts with various complexities. The result shows significant improvement in terms of performance parameters, namely, machining time, tool path length, and code length while maintaining the desired part surface quality. The proposed method is also tested by machining a real surface and analyzing its surface quality.
机译:本文介绍了三轴计算机数字控制(CNC)加工的高效刀具路径规划策略,使用基于曲率的基于曲率表面(CBS)从其表示点云形式的表示。在点数据上估计的曲率参数用于将表面分配到凸起,凹形和鞍状区域中。基于网格的自适应平面工具路径规划策略是开发的,以便在其边界内单独加工每个区域。除了逐个区域加工之外,还开发了一种缝合所获得的区域的策略,以最小化工具升降机和工具标记。将开发的地区的工具路径规划策略与基于点云的自适应平面战略,ISO-Scallop策略和具有各种复杂性部件的商业软件进行了比较。结果显示了性能参数,即加工时间,刀具路径长度和代码长度的显着改善,同时保持所需的部分表面质量。该方法还通过加工真实表面并分析其表面质量来测试。

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