Fast evaluation of geometric constraints for bending sequence planning

M. Inui, H. Terakado
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引用次数: 3

Abstract

In the sheet metal part manufacturing, bending is the most commonly used to realize sufficient rigidity and to obtain a part of desired shape to perform a certain function. Feasible bending sequences of a sheet metal part can be determined by successively applying bending simulations to the geometric model of a blank. Unfortunately, this simulation based method is computationally expensive because enormous search-space must be explored if complex parts with many bending lines are given. Complex parts usually have rather small number of feasible bending sequences because other sequences cause self interferences or interferences with tools in the bending operations. Based on this characteristic of the sheet metal part, we develop a new method to accelerate the simulation based bending sequence planning. This method reduces the computation cost by efficiently detecting the interferences in the early stage of the search process. In the bending sequence planning, the same geometric computations for the interference detection are repeated many times. This redundancy is eliminated by saving and reusing the previous computation results. The proposed method is implemented and an experimental bending sequencing program is demonstrated.
弯曲序列规划几何约束的快速评估
在钣金件制造中,弯曲是最常用的方法,以实现足够的刚度,并获得所需形状的零件,以执行一定的功能。通过对坯料的几何模型进行连续的弯曲模拟,可以确定板料零件可行的弯曲顺序。不幸的是,这种基于仿真的方法计算量很大,因为对于具有许多弯曲线的复杂零件,必须探索巨大的搜索空间。复杂零件在弯曲加工过程中,由于其他顺序的干扰或对刀具的干扰,其可行的弯曲顺序往往很少。针对板料零件的这一特点,提出了一种基于仿真的加速弯曲顺序规划的新方法。该方法在搜索过程的早期有效地检测到干扰,减少了计算量。在弯曲序列规划中,干涉检测的相同几何计算要重复多次。通过保存和重用以前的计算结果来消除这种冗余。并对该方法进行了实现,给出了一个弯曲排序实验程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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