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Configuration-space searching and optimizing tool orientations for 5-axis matching

机译:配置空间搜索和优化5轴匹配的刀具方向

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摘要

This paper presents a methodology and algorithms of optimizing and smoothing the tool orientation control for 5-axis sculptured surface machining. A searching method in the machining configuration space (C-space) is proposed to find the optimal tool orientation by considering the local gouging, rear gouging and global tool collision in machining. Based on the machined surface error analysis, a boundary search method is developed first to find a set of feasible tool orientations in the C-space to eliminate gouging and collision. By using the minimum cusp height as the objective function, we first determine the locally optimal tool orientation in the C-space to minimize the machined Surface error. Considering the adjacent part geometry and the alternative feasible tool orientations in the C-space, tool orientations are then globally optimized and smoothed to minimize the dramatic change of tool orientation during machining. The developed method can be used to automate the planning and programming of tool path generation for high performance 5-axis sculptured surface machining. Computer implementation and examples are also provided in the paper.
机译:本文介绍了用于5轴雕刻表面加工的工具方向控制的方法和算法。提出了一种在加工配置空间(C-SPACE)中的搜索方法来通过考虑机械加工中的局部刨刨,后刨花和全球刀具碰撞来找到最佳工具方向。基于机加工表面误差分析,首先开发了边界搜索方法,在C空间中找到一组可行的工具方向,以消除刨刨和碰撞。通过使用最小尖端高度作为目标函数,我们首先确定C空间中的局部最佳刀具方向,以最小化加工表面误差。考虑到C - 空间中的相邻部分几何形状和替代可行的工具方向,然后将刀具定向全球优化和平滑,以最小化加工过程中刀具方向的显着变化。开发方法可用于自动化高性能5轴雕刻表面加工的刀具路径生成的规划和编程。本文还提供了计算机实现和示例。

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