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Graph Approach For Optimal Design Of Transfer Machine With Rotary Table

机译:带转台的移送机优化设计的图法

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摘要

A line balancing problem for transfer machines with rotary tables is considered. This type of machine is used in mass production. A part is sequentially machined on m working positions and is moved from one position to the next using a rotary table. The operations are grouped into blocks, where the operations of the same block are simultaneously performed by one piece of equipment with several tools (a multi-spindle head). All multi-spindle heads of a machine are simultaneously activated. Therefore, all operations of the machine are executed in parallel on m parts mounted on the rotary table. The line balancing problem consists of partitioning the set of all operations into sub-sets in order to minimize the number of working positions and the total number of spindle heads while satisfying all the constraints (precedence, compatibility for spindle heads, etc.). The method proposed in this paper is based on transforming this line balancing problem into a search for a constrained shortest path. An algorithm for simultaneously generating a graph and finding a constrained shortest path is developed. Some dominance rules for reducing the graph size are provided. An industrial example is presented in detail and experimental results on other industrial instances are reported.
机译:考虑具有转台的转移机的生产线平衡问题。这种类型的机器用于批量生产。零件在m个工作位置上顺序加工,然后使用转台从一个位置移动到下一个位置。这些操作被分组为多个块,其中同一块的操作由一件带有多个工具的设备(多主轴头)同时执行。机器的所有多主轴头同时被激活。因此,机器的所有操作都在安装在转台上的m个零件上并行执行。线平衡问题包括将所有操作的集合划分为子集,以便在满足所有约束(优先级,主轴头兼容性等)的同时,将工作位置的数量和主轴头的总数最小化。本文提出的方法是基于将这种线平衡问题转化为对约束最短路径的搜索。开发了一种用于同时生成图并找到约束的最短路径的算法。提供了一些用于减小图形大小的主导规则。详细介绍了一个工业实例,并报告了其他工业实例的实验结果。

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