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ASSEMBLY HIERARCHY GENERATION FOR ASSEMBLY SYSTEM DESIGN FOR A PRODUCT FAMILY

机译:产品系列的装配系统设计的装配层次生成

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Increased demand on product variety entails a flexible assembly system for product families which can be quickly configured and reconfigured in a responsive manner to deal with various product designs. Development of such a responsive assembly system requires an in-depth understanding of the impact of product family design on assembly system performance. In this paper, the linkage between the product family design and assembly systems is characterized by an assembly hierarchy model, which reflects a hierarchical relationship among all possible sub-assemblies and components, assembly tasks, and material flow among the tasks. Our prior research developed a recursive algorithm to generate all assembly hierarchy candidates for one single product based on its liaison graph without redundancy. These generated assembly hierarchies provide a structure to help efficiently explore optimal assembly system designs with reduced computational load. In this paper, the application of the assembly hierarchy generation algorithm will be extended to a product family by developing joint liaison graph model. Taking the advantage of the modular design of the product family, we proposed a concept of multilevel joint liaison graphs to overcome the computational challenge brought by assembly hierarchy generation for joint liaisons. Two case studies were conducted to demonstrate the algorithm.
机译:对产品种类不断增长的需求要求为产品系列提供灵活的组装系统,该系统可以以快速响应的方式进行配置和重新配置,以应对各种产品设计。开发这种响应式装配系统需要深入了解产品系列设计对装配系统性能的影响。在本文中,产品系列设计和装配系统之间的联系以装配层次模型为特征,该模型反映了所有可能的子装配和零部件,装配任务以及任务之间的物料流之间的层次关系。我们先前的研究开发了一种递归算法,可以基于其联系图生成单个产品的所有装配层次候选,而不会产生冗余。这些生成的装配层次结构提供了一种结构,可帮助以减少的计算负荷有效地探索最佳的装配系统设计。本文通过建立联合联络图模型,将装配层次生成算法的应用扩展到一个产品族。利用产品系列的模块化设计优势,我们提出了多级联合联络图的概念,以克服装配层次生成为联合联络带来的计算挑战。进行了两个案例研究以证明该算法。

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