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首页> 外文期刊>International journal of advanced operations management >Block printing process performance evaluation and improvement using FMEA and Taguchi loss function for selecting print paste suppliers in apparel industry
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Block printing process performance evaluation and improvement using FMEA and Taguchi loss function for selecting print paste suppliers in apparel industry

机译:通过FMEA和Taguchi损耗功能块打印过程性能评估和改进,用于选择服装行业的印刷膏供应商

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摘要

Block printed fabrics are a choice of many, both in India and abroad. Block printing is a time-consuming process requiring expertise of traditional artisans. But with the current fast urbanisation, technological advances, the opportunities seem minimal for these artisans. Setting up of micro, small and medium enterprises (MSMEs) ensures jobs for many such artisans. Even these MSMEs need to strive for overall operational and service excellence. Hence, the focus of this study is on minimisation of defects to enhance block printing process in an Indian apparel manufacturing MSME. For this Six Sigma is implemented through define, measure, analyse, improve and control. Root causes for occurrence of defects were uncovered through current reality tree (CRT). The large number of root causes, are prioritised in two-folds using analytic hierarchy process (AHP) and failure mode and effect analysis (FMEA). Root causes obtained were then eliminated in two phases of improvement. Using Taguchi loss function (TLF) and AHP for evaluating and selection of best suppliers of print paste. In second phase, FMEA is performed to ensure the feasibility of all improvement initiatives taken against each root cause. Improvement in the process is established in terms of sigma level.
机译:块印花织物是印度和国外的许多选择。块打印是一种需要传统工匠的专业知识的耗时过程。但随着目前的全部城市化,技术进步,这些工匠的机会似乎很小。建立微量,中小企业(MSMES)确保许多这样的工匠的工作。即使这些MSME也需要争取整体运营和卓越的服务。因此,本研究的重点是最小化缺陷,以增强印度服装制造MSME中的块印刷过程。对于此六西格玛通过定义,测量,分析,改进和控制来实现。通过当前现实树(CRT)揭示出发生缺陷的根本原因。使用分析层次过程(AHP)和故障模式和效果分析(FMEA),在两折优先于两倍优先考虑。然后在改进的两阶段中消除所得根原因。使用Taguchi丢失功能(TLF)和AHP进行评估和选择最佳的印刷浆料供应商。在第二阶段,进行FMEA以确保对每个根本原因采取的所有改进措施的可行性。在ΣIGMA水平方面建立了该过程的改进。

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