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Cutter selection for 5-axis milling of sculptured surfaces based on accessibility analysis

机译:基于辅助功能分析的雕刻表面五轴铣削刀具选择

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摘要

Cutter selection is an important issue in process planning for 5-axis milling of sculptured surfaces. To select the optimal cutter (from a set of available ones) to machine a given sculptured surface, it is essential to check whether a cutter is able to finish the entire surface without any interference. It is, therefore, necessary to check the accessibility of a cutter at any point on the surface. In this paper, the issues involved in cutter accessibility checking at a point are studied and corresponding checking methods have been developed. A search algorithm has been developed that is able to find the accessible posture range for a given cutter in terms of the tilting and rotational angles. The constraints considered in cutter accessibility analysis include the machine's axis limit, local-gouging, rear-gouging, and global-collision. This point-based solution is then extended to cover the whole surface by discretising the surface. In order to reduce the heavy computation in the checking procedure for the whole surface, the surface is decomposed into interference-prone and interference-free regions before cutter accessibility analysis by considering the local surface geometry and the cutter's geometry. The cutter considered is a cylindrical cutter with a fillet-end. Examples are given to show the validity, efficacy and robustness of the developed methods.
机译:在对雕刻表面进行5轴铣削的加工计划中,刀具的选择是一个重要的问题。要选择最佳刀具(从一组可用刀具中)来加工给定的雕刻表面,必须检查刀具是否能够在没有任何干扰的情况下精加工整个表面。因此,有必要在表面的任何位置检查刀具的可及性。本文研究了刀具在某一点的可及性检查中涉及的问题,并开发了相应的检查方法。已经开发出一种搜索算法,该算法能够根据倾斜角度和旋转角度找到给定刀具的可到达姿势范围。刀具可及性分析中考虑的约束包括机器的轴限制,局部气刨,后气刨和整体碰撞。然后,通过离散化曲面,可以将此基于点的解决方案扩展为覆盖整个曲面。为了减少整个表面检查过程中的繁琐计算,在考虑刀具局部可及性之前,通过考虑局部表面几何形状和刀具的几何形状,将表面分解为易干扰区域和无干扰区域。所考虑的刀具是带有圆角端的圆柱形刀具。举例说明了所开发方法的有效性,有效性和鲁棒性。

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