首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >An efficient cutter contact curve tool path regeneration algorithm for sculptured surface machining
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An efficient cutter contact curve tool path regeneration algorithm for sculptured surface machining

机译:一种有效的用于雕刻曲面加工的刀具接触曲线刀具路径再生算法

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摘要

Mould design modification is a common process in the mould manufacturing industry. When a mould design is changed, tool paths that cover the modified region must be regenerated. Traditionally, if a mould design is modified, all the generated tool paths must be recalculated, which is very time consuming and error prone. This paper presents a new tool path regeneration algorithm based on the CC (cutter contact) curve tool path generation topology, where a CC curve is the curve on the workpiece surface along which the cutter contacts the workpiece. With this algorithm, the affected cutter location (CL) points are identified efficiently from the tool paths that are generated from the original mould design. Gouge-free CL points are then calculated to replace the affected ones. When the new CL points are calculated, their scallop height values are checked. If they are greater than the given value, new tool path rows are added to maintain the required surface finish. The unaffected CL points will be reused to machine the modified mould directly, and this can reduce the tool path regeneration time and the occurrence of NC programming errors significantly, especially for machining complex sculptured surfaces. The algorithm has been tested on several industrial parts and it was found to be efficient and robust, and the regenerated tool paths are gouge-free and smooth.
机译:模具设计修改是模具制造行业中的常见过程。更改模具设计时,必须重新生成覆盖修改区域的刀具路径。传统上,如果修改了模具设计,则必须重新计算所有生成的刀具路径,这非常耗时且容易出错。本文提出了一种基于CC(刀具接触)曲线刀具路径生成拓扑的新刀具路径再生算法,其中CC曲线是刀具接触工件的工件表面上的曲线。使用此算法,可以从原始模具设计生成的刀具路径中有效地识别出受影响的刀具位置(CL)点。然后计算无气孔的CL点以替换受影响的点。计算新的CL点时,将检查其扇贝高度值。如果它们大于给定值,则添加新的刀具路径行以保持所需的表面光洁度。不受影响的CL点将被重复使用以直接加工修改后的模具,这可以显着减少刀具路径的再生时间和NC编程错误的发生,尤其是在加工复杂的雕刻表面时。该算法已在多个工业零件上进行了测试,结果证明该算法高效且健壮,并且重新生成的刀具路径无切屑且光滑。

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