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5-Axis machining speed enhancement by step length optimization

机译:通过步长优化提高5轴加工速度

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摘要

In this paper, an NC data optimization approach for enhancing 5-axis machining speed is presented. It is usual to use expensive commercial CAD/CAM programs for NC data of 5-axis machining, since it needs very large calculations for optimal tool positioning and orientation, tool path planning, and collision-free tool path generation. Since commercial CAD/CAM systems have similar functions and efficiency based on common algorithms of reliable theories, they do not have their own unique features for machining speed and efficiency. In other words, most commercial CAD/CAM systems consider only the characteristics of part geometry to be machined, which means that they generate almost the same NC data if the part to be machined is the same, even though different machines are used for the part. A new approach is proposed for optimizing NC data of 5-axis machining, which is based on the characteristics of the machine to be operated. As a result, the speed of 5-axis machining can increase without losing machining accuracy and surface quality.
机译:本文提出了一种提高5轴加工速度的NC数据优化方法。通常需要使用昂贵的商业CAD / CAM程序来获取5轴加工的NC数据,因为它需要进行大量计算才能获得最佳的刀具定位和定向,刀具路径规划以及无碰撞的刀具路径生成。由于商业CAD / CAM系统基于可靠理论的通用算法具有相似的功能和效率,因此它们没有自己的独特特征来提高加工速度和效率。换句话说,大多数商用CAD / CAM系统仅考虑待加工零件的几何特征,这意味着即使待加工零件相同,即使零件相同,它们也会生成几乎相同的NC数据。 。根据要操作的机床的特性,提出了一种用于优化五轴加工NC数据的新方法。结果,可以提高五轴加工的速度,而不会降低加工精度和表面质量。

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