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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimal positioning of irregular shapes in stamping die strip
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Optimal positioning of irregular shapes in stamping die strip

机译:冲压模具带中不规则形状的最佳定位

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摘要

The nesting of two-dimensional shapes is a common problem, where raw material has to be economically cut. As for the single-pass single-row strip layout, several algorithms, based on established methods, have been proposed. Moreover, it should be noticed that the optimum layout should also consider a few constraints, like grain orientation for subsequent forming operation, correct bridge width, and the commercial roll of metal width in order to make solutions applicable in real industrial environments. Most of the procedures until now shown in literature are quite complex and often ignore these real constraints. They usually make use of sliding techniques and are not able to effectively work with relatively multiple-connected figures. In particular, most of the different proposed procedures are based on the No Fit Polygon (NFP) computation of non-convex polygons, which often generates holes. This work is a proposal for a more efficient method, which can be used in heuristic procedures. In order to overcome some faults of most of the former methods presented in literature, in this paper a new geometric entity called “No Fit Path” (NFPh) of non-convex polygons is applied. It allows researchers to find solutions of nesting problems even when there are NFP faults due to degenerate solutions. Moreover, the No Fit Path allows researchers to easily read, modify, or share their results, overcoming all those problems arising from the usual large amount of information and from the different origins and formats of the obtained data. Given two non-convex polygons, the algorithm is able to calculate their NFPh very quickly and without any approximation by a polygon clipping method. In this paper a totally automated procedure has been developed. This procedure firstly obtains the “No Fit Path” (NFPh); secondly, between all the existing positions on the NFPh, the algorithm searches the optimal one, minimizing the global waste. The proposed approach also allows designers to set an optimal orientation of the shapes on the roll of metal, taking account of the grain orientation in order to obtain the best mechanical characteristics for the cut pieces.
机译:二维形状的嵌套是一个普遍的问题,必须从经济上切割原材料。对于单道单行带钢布局,已经提出了几种基于既定方法的算法。此外,应该注意的是,最佳布局还应考虑一些约束条件,例如后续成形操作的晶粒取向,正确的桥宽度以及金属宽度的商用轧辊,以使解决方案适用于实际工业环境。到目前为止,文献中显示的大多数过程都非常复杂,并且经常忽略这些实际约束。它们通常利用滑动技术,并且无法有效地处理相对多连接的图形。特别是,大多数建议的不同过程都是基于非凸多边形的“不适合多边形”(NFP)计算,该多边形通常会产生孔。这项工作是对可以在启发式过程中使用的更有效方法的建议。为了克服文献中提出的大多数以前方法的某些缺点,本文采用了一种新的非凸多边形几何实体“无拟合路径”(NFPh)。它使研究人员即使由于退化的解决方案而导致NFP故障时,也可以找到嵌套问题的解决方案。此外,No Fit Path使研究人员可以轻松地阅读,修改或共享他们的结果,从而克服了通常由大量信息以及所获得数据的不同来源和格式所引起的所有问题。给定两个非凸多边形,该算法能够非常快速地计算其NFPh,而无需通过多边形裁剪方法进行任何近似计算。在本文中,已经开发了一种全自动程序。该过程首先获得“不适合路径”(NFPh);其次,在NFPh的所有现有位置之间,该算法搜索最佳位置,从而最大程度地减少了总体浪费。所提出的方法还允许设计人员在考虑到晶粒取向的情况下,在金属卷上设置形状的最佳取向,以获得切割件的最佳机械特性。

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