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Heuristic and genetic approach for nesting of two-dimensional rectangular shaped parts with common cutting edge concept for laser cutting and profile blanking processes

机译:具有通用切削刃概念的二维矩形零件嵌套的启发式和遗传方法,用于激光切割和型材落料工艺

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摘要

This paper presents a novel two-dimensional nesting strategy suitable for sheet metal industries employing laser cutting and profile blanking processes. The proposed nesting approach is developed by the combination of heuristic and genetic algorithms in order to generate an effective nested pattern, in such a way that, it minimizes the sheet material wastage and also the cutting tool path distance, while arranging a set of rectangular parts in a rectangular sheet. With the proposed bottom-left heuristic method, at first, the parts are considered in a specific sequence and orientation, and each part is translated to the feasible bottom left most position on the previously placed parts and then adjusted to form the common cutting edges with adjacent parts. Further, the heuristic algorithm ensures the formation of clusters, in which a group of parts share the cutting edges, for effective handling of parts while cutting. Finally the optimal and effective nested pattern is generated by the genetic evaluation process which reproduces several sets of nested patterns, before converging to the optimality. The effectiveness of the proposed work, in terms of utilization of sheet material, is demonstrated by comparing the results obtained from the literature. Furthermore the uniqueness of the present approach in enhancing the nested pattern efficiency and minimizing the tool path distance with common cutting edge concept is illustrated.
机译:本文提出了一种适用于采用激光切割和型材落料工艺的钣金行业的新型二维嵌套策略。拟议的嵌套方法是通过启发式算法和遗传算法的结合而开发的,目的是生成有效的嵌套图案,从而在布置一组矩形零件的同时,最大程度地减少板材浪费和刀具路径距离。在一个矩形表中。使用建议的左下启发式方法,首先,按照特定的顺序和方向考虑零件,然后将每个零件平移到先前放置的零件上最可行的最左下方位置,然后进行调整以形成通用的切削刃相邻零件。此外,启发式算法可确保簇的形成,其中一组零件共享切削刃,以便在切割时有效地处理零件。最后,通过遗传评估过程生成最佳和有效的嵌套模式,该过程会在收敛到最优值之前复制几套嵌套模式。通过比较从文献中获得的结果,就板材的利用而言,拟议工作的有效性得到了证明。此外,示出了本方法在提高嵌套图案效率和使刀具路径距离最小化方面具有共同的切削刃概念的独特性。

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