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The use of minor setups within production cycles to improve product quality and yield

机译:在生产周期内使用次要设置来提高产品质量和产量

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摘要

Inventory models linking lot size and product quality assume that the proportion of defectives per lot increases as the lot size increases. Such models give optimal lot sizes smaller than those obtained when quality is ignored. These models do not consider the possibility of adjusting the process within a production cycle. This adjustment does not involve performing all activities of a full setup and incurs only a fraction of a full setup cost and time. In this paper, we reformulate some inventory models which take into account the negative relationship between lot size and quality and the possibility of performing minor setups, which may or may not require stopping the process, during a production cycle. We derive closed-form expressions for the optimal lot sizes and number of minor setups within each cycle. The analysis is performed for both zero operating time cost and non-zero operating time cost. The models show that using minor setups to improve yield leads to larger lot sizes between major setups. We illustrate the models with numerical examples.
机译:将批次大小和产品质量联系起来的库存模型假定,随着批次大小的增加,每批次的次品比例也会增加。这样的模型提供的最佳手数小于忽略质量时的最佳手数。这些模型没有考虑在生产周期内调整流程的可能性。此调整不涉及执行完整设置的所有活动,而仅产生完整设置成本和时间的一小部分。在本文中,我们重新设计了一些库存模型,其中考虑了批量大小和质量之间的负相关关系以及在生产周期中执行较小设置(可能需要也可能不需要停止流程)的可能性。我们在每个周期内得出最佳批量大小和次要设置数量的闭式表达式。针对零运行时间成本和非零运行时间成本执行分析。模型显示,使用次要设置来提高产量会导致主要设置之间的批量更大。我们用数值示例说明模型。

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