...
首页> 外文期刊>International journal for simulation and multidisciplinary design optimization >Optimization of strip-layout using graph-theoretic methodology for stamping operations on progressive die: a case study
【24h】

Optimization of strip-layout using graph-theoretic methodology for stamping operations on progressive die: a case study

机译:利用图 - 理论方法对渐进模具的图 - 理论方法优化剥离操作:一个案例研究

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The design of the progressive die stamping process is optimized through minimizing the number of die stamping stations in the strip layout to reduce the die cost. In order to accomplish such end, in this study, a graph-theoretic based method is implemented to model and optimize the strip layout design. This method starts with mapping stamping features into stamping operations. This step is followed by constructing two graphs to model the precedence and adjacency constraints among stamping operations based on a set of manufacturing rules. These two graphs are called: operation precedence graph and operation adjacency graph. In the next step, a topological sorting algorithm clusters the operations into partially ordered sets. Then, a graph coloring algorithm clusters the partially ordered operations sets into final sequence of operations. The graph-theoretic technique has been implemented on a part currently manufactured by laser cutting process technology in some Egyptian factory in Cairo. This study indicated that the graph-theoretic technique offers several advantages including the ease of programming and transparency in understanding the obtained strip layout design. This is besides being a systematic and logically approach to obtain an optimized strip layout design. In general, the progressive die manufacturing can increase productivity of sheet metal works in Egypt, only in situations of mass production. The limitation is that it requires considerable skill level and training for labor to conduct die strip layout design.
机译:通过最小化条带布局中的模具冲压站的数量来优化渐进模具冲压工艺的设计,以降低模具成本。为了实现这些结束,在本研究中,实现了基于图形的方法来模拟和优化条带布局设计。此方法从映射冲压功能映射到冲压操作中。然后,该步骤遵循构建两个图形,以基于一组制造规则来模拟冲压操作之间的优先级和邻接约束。这两个图表称为:操作优先级图和操作邻接图。在下一步骤中,拓扑分类算法将操作集群群集为部分有序的集合。然后,将部分有序的操作集群集群集群将部分有序的操作集集成到最终操作序列中。图形理论技术已在开罗的一些埃及工厂中的激光切割工艺技术的一部分实施。本研究表明,图形理论技术提供了几个优点,包括在理解所获得的带布局设计时便于编程和透明度。除了是一种系统和逻辑上的方法,可以获得优化的剥离布局设计。通常,逐步模具制造可以增加埃及金属板的生产率,仅在批量生产的情况下。限制是,它需要相当大的技能水平和培训来进行模具剥离布局设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号