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Generating efficient tool paths from point cloud data via machining area segmentation

机译:通过加工区域分割从点云数据生成有效的刀具路径

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摘要

This paper presents a method of generating efficient three-axis ball-end milling tool paths directly from point cloud data. The primary objective is to achieve high efficiency in the machining of free-form surface geometry having isolated complex machining area. The high machining efficiency is attained by segmenting the entire machining domain into distinct areas according to the geometric complexity of the data points and by using cutters of different sizes for the segmented machining areas. An iterative numerical procedure is derived to determine the critical complexity that separates the data points with higher complexity (the complex points) from those with lower complexity (the non-complex points). A larger and more efficient ball-end mill is used to machine the area defined by the non-complex points. The gouging condition of all the data points is then evaluated with respect to the given ball-end mill. The isolated complex machining area is established by enclosing both the complex points and the gouge points. The smaller and gouge-free ball-end mill for the isolated complex machining area is subsequently selected from the standard commercial cutter series. Implementation of the presented method clearly demonstrates the high efficiency of the generated tool paths.
机译:本文提出了一种直接从点云数据中生成有效的三轴球头立铣刀路径的方法。主要目的是在加工具有孤立复杂加工区域的自由形式表面几何形状时实现高效率。通过根据数据点的几何复杂度将整个加工域划分为不同的区域,并通过对分割的加工区域使用不同尺寸的刀具,可以实现较高的加工效率。推导了迭代数值过程,以确定将复杂度较高的数据点(复杂点)与复杂度较低的数据点(非复杂点)分开的临界复杂度。使用更大,效率更高的球头立铣刀来加工非复杂点定义的区域。然后,针对给定的球头立铣刀评估所有数据点的气刨条件。通过同时封闭复杂点和切屑点来建立孤立的复杂加工区域。随后,从标准的商用铣刀系列中选择了用于孤立复杂加工区域的较小且无气刨的球头立铣刀。所提出方法的实施清楚地证明了所生成刀具路径的高效率。

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