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Performance evaluation of small-batch container delivery systems used in lean manufacturing - Part 2: number of Kanban and workstation starvation

机译:精益生产中使用的小批量容器输送系统的性能评估-第2部分:看板和工作站饥饿的数量

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摘要

In lean manufacturing, milk run (MR) systems represent route-based, cyclic material handling systems that are used widely to enable frequent and consistent deliveries of containerised parts on an as-needed basis from a central storage area (the 'supermarket') to multiple line-side deposit points on the factory floor. In the first part of this two-part paper, a basic, single-tugger MR system is described, and stability conditions as well as the probability of exceeding either the physical capacity of the tugger or the prescribed cycle time are derived. Given the stability conditions, and the distribution of the number of containers requested per MR, in the second part of the paper, the number of Kanban required in the MR system is examined, and analytical approximations are derived both for the number of Kanban required and for predicting workstation starvation. The latter is a key concern when designing a MR system that will support workstations in a manufacturing plant. The performance of the analytic approximation is evaluated by simulating various MR systems. Our results suggest that, in a stable MR system, the number of Kanban and the physical capacity of the tugger have a bigger impact on workstation starvation than the prescribed cycle time.
机译:在精益生产中,牛奶运行(MR)系统代表基于路线的循环式物料处理系统,该系统被广泛用于根据需要从中央存储区(“超级市场”)到集装箱的零件频繁,一致地交付。在工厂车间的多个生产线侧沉积点。在这个由两部分组成的论文的第一部分中,描述了基本的单拖拉MR系统,并得出了稳定性条件以及超过拖拉器的物理容量或规定的循环时间的概率。给定稳定性条件,以及每个MR要求的集装箱数量的分布,在本文的第二部分中,检查了MR系统中所需的看板数量,并得出了所需的看板数量和分析近似值。用于预测工作站饥饿。在设计将支持制造工厂中的工作站的MR系统时,后者是一个关键问题。通过模拟各种MR系统来评估解析逼近的性能。我们的结果表明,在稳定的MR系统中,看板的数量和牵引车的物理容量对工作站饥饿的影响大于规定的循环时间。

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