应用精益改善方法降低线束生产车间的废品和失效成本

IF 0.7 4区 工程技术 Q3 ENGINEERING, MULTIDISCIPLINARY
Pramod Kumar, D. Singh, J. Bhamu
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引用次数: 0

摘要

改善是精益生产的一个基本工具,它有助于在不同的组织中更好地改进和提高成本效益。本研究描述了一种采用改善持续改进的方法来消除线束制造单元中带束的锁解问题的顺序方法。由于释放这种自锁式扎带,线束没有正确地固定在支架上,电线没有正确拧紧,导致产品的高废品率。此外,它还会影响整体质量等级,并显著增加返工成本。在本研究中,通过头脑风暴确定了导致拒绝的四个问题。帕累托分析和评级方法用于了解主要问题,负责最高次品和why-why分析用于找出确定问题的根本原因。为了消除这一原因,案例公司采用了基于精益生产方法的分步流程。统计质量控制工具也用于分析问题。这项研究的结果是每年总费用节省535.20美元,除此之外,还观察到一些其他有形或无形的利益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Kaizen Lean approach to reduce rejections and failure cost at Shop floor of a wire harness manufacturing
Kaizen is a basic tool of lean manufacturing which is useful for better improvement and cost effectiveness in different organizations. This study describes a sequential method that uses kaizen continuous improvement approach to eliminate the lock release problem of band harness in a Wire Harness Manufacturing unit. Due to releasing of this self-locking type tie band, wire harness was not holding properly against the bracket and wires were not properly tightened which results in high rejection level of the product. Further, it also affects overall quality rating and increasing the rework cost significantly. In present study four problems which are responsible for rejections, are identified through brainstorming. Pareto analysis and rating method are used to know the major problem, responsible for highest rejections and why-why analysis is used to find out the root cause of the identified problem. To eliminate this cause, step by step procedure based on lean manufacturing approach, is applied in the case company. Statistical quality control tools are also used to analyze the problem. This study results in total cost saving of 535.20 $ per annum and beyond this some other tangible or intangible benefits were also observed.
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来源期刊
Indian Journal of Engineering and Materials Sciences
Indian Journal of Engineering and Materials Sciences 工程技术-材料科学:综合
CiteScore
1.70
自引率
11.10%
发文量
57
审稿时长
9 months
期刊介绍: Started in 1994, it publishes papers in aerospace engineering, mechanical engineering, metallurgical engineering, electrical/electronics engineering, computer science and engineering; civil engineering, environmental engineering, heat transfer, fluid mechanics, instrumentation, and materials science.
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