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Design of multi-station manufacturing processes by integrating the stream-of-variation model and shop-floor data

机译:通过整合变异流模型和车间数据来设计多工位制造流程

摘要

Processdesign has been intensively studied to reduce dimensional variability of products produced in multi-stationmanufacturingprocesses (MMPs). Most of the existing studies focus on predicting variation propagation and evaluating process robustness. However, these studies overlook the potential use of historical shop-floor quality data of existing MMPs in order to extract the actual manufacturing operation capabilities from each station, and then, to evaluate more accurately the expected dimensional variability of new candidate process plans. This paper proposes a methodology to improve process plan selection based on three components: (i) based on historical shopfloordata, an inference on the process capabilities of the stations in an existing MMP, which will be used to produce the new product; (ii) a sensitivity analysis of candidate process plans to identify critical fixtures and manufacturingstations/operations; and (iii) an optimal selection of candidate process plans. A case study is presented to demonstrate the effectiveness of the methodology.
机译:已对过程设计进行了深入研究,以减少在多工作站制造过程(MMP)中生产的产品的尺寸变化。现有的大多数研究都集中于预测变量传播和评估过程的鲁棒性。但是,这些研究忽略了现有MMP车间历史质量数据的潜在用途,以便从每个站点提取实际的制造操作能力,然后更准确地评估新候选工艺计划的预期尺寸可变性。本文基于以下三个方面提出了一种改进工艺计划选择的方法:(i)基于历史车间数据,对现有MMP中工作站的工艺能力进行推断,该工艺将用于生产新产品; (ii)对候选工艺计划的敏感性分析,以确定关键的固定装置和制造工位/操作; (iii)最佳选择候选工艺计划。案例研究表明了该方法的有效性。

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