识别车铣复合零件中交互加工特征的组合优化方法

A combinatorial optimisation approach for recognising interacting machining features in mill-turn parts

International Journal of Production Research · 2018
被引 8
ABS 3

中文导读

提出一种组合优化方法,通过将材料去除体积细分为单元并组合成特征,利用模拟退火算法优化特征分布,解决车铣复合零件中交互特征识别问题,为工艺规划提供更优方案。

Abstract

Feature interactions may result in many process alternatives in part machining. Traditional process planning methods only identify one of the options, which is usually not optimal in the sense of engineering. This paper presents an optimisation approach to handle the interacting feature recognition problem in mill-turn parts. The approach subdivides the material removal volume into cells first and then it combines the cells into features. Here, a two-level cell combination method is developed. On the lower level, individual features are formed by searching the combinations of cells near a given part face; on the upper level, the feature distributions are explored by rearranging the order of part faces for feature formation. In order to optimise the feature distribution, a novel optimisation model is proposed, which quantitatively distinguishes its options by considering the factors of feature numbers, tool approaching directions, cutting directions and surface roughness. The combinatorial optimisation problem is solved with the simulated annealing algorithm. Instead of searching cell combinations directly, the proposed method explores different part face sequences, which drastically reduces the search space. The case studies show that the proposed approach can effectively handle the traditional difficulty in recognising the interacting features for mill-turn parts.

机械工程计算机科学制造工艺优化算法