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首页> 外文期刊>Journal of Manufacturing Technology Management >Assembly line segmentation: determining the number of stations per section
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Assembly line segmentation: determining the number of stations per section

机译:流水线分段:确定每个部分的工位数量

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Purpose - The purpose of this paper is to ascertain and expose considerations related to the division of assembly lines into segments, and to develop a framework for assessing the impact of line segmentation. In particular, the paper aims to investigate the decision regarding the number of stations in each segment, and its impact on costs, throughput, and span of control. Design/methodology/approach - The paper analyzes the literature, identifies the main considerations related to assembly line segmentation, and develops a mathematical model that reflects important factors related to the impact of segment length on the throughput and costs. The paper derives several important bounds on the number of stations (length) of a line's segment, which should be incorporated in the final design of the line sections. Findings - A trade-off was found between the revenue (and throughput) and the buffer spaces located between each pair of sections of an assembly line. The higher the product price, the shorter the segments are. On the other hand, when buffer costs are higher, the line segments are longer (fewer sections and buffers are used). Interestingly, except of stoppages, the other two dominant factors in the segmentation decision are: absenteeism, and span of control. Using these factors, various upper bounds were found on the number of stations per section (which determine the total number of sections). The tightest upper bound is the active one, and this ensures line sections with a small number of stations. Practical implications - The model provides a framework of considerations to help designers of assembly lines and production lines determine the appropriate division of the line into sections and zones, and the best allocation of stations to sections. In addition, finding effective upper bounds for the number of stations in a line section establishes the practicality of exact methods for designing and balancing each section. Originality/value - This is the first paper to offer a quantitative treatment of the various factors affecting assembly line segmentation. By finding the upper bound on the number of station per section, the paper establishes the practicality of exact methods for designing and balancing each section separately. Moreover, it provides a sound basis for future research related to design of assembly and production lines, and management of sequential processes.
机译:目的-本文的目的是确定并公开与将装配线划分为多个段相关的注意事项,并建立评估线段影响的框架。特别是,本文旨在调查有关每个网段中站点数量的决策及其对成本,吞吐量和控制范围的影响。设计/方法/方法-本文分析了文献,确定了与流水线分段有关的主要考虑因素,并开发了一个数学模型,该模型反映了与分段长度对吞吐量和成本的影响有关的重要因素。本文得出了一条线段的站点数(长度)的几个重要界限,这些界限应纳入到线段的最终设计中。发现-在收益(和吞吐量)与组装线每对部分之间的缓冲区空间之间找到了一个折衷方案。产品价格越高,细分越短。另一方面,当缓冲区成本较高时,线段会更长(使用更少的部分和缓冲区)。有趣的是,除了停工之外,细分决策中的其他两个主要因素是:旷工和控制范围。利用这些因素,可以发现每个区段的站点数(确定区段总数)的各种上限。最严格的上限是活动上限,这可确保线路段的站点数量少。实际意义-该模型提供了一个考虑框架,以帮助组装线和生产线的设计人员确定将生产线适当地划分为部分和区域,以及将工位分配到各个部分的最佳方式。此外,找到线路段中站点数量的有效上限可以确定设计和平衡每个部分的精确方法的实用性。原创性/价值-这是第一篇对影响组装线分割的各种因素进行定量处理的论文。通过找到每节站数的上限,本文确定了分别设计和平衡每节的精确方法的实用性。此外,它为与组装和生产线的设计以及顺序过程的管理有关的未来研究提供了良好的基础。

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