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Six Sigma Applications: Enhancement Sigma Level towards Quality Improvement at Automative Company

机译:六西格玛应用:增强Sigma水平对汽车公司的质量改进

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Achieving high rate of performance is one of the aims in any organizations, especially under the pressure of competition. This paper presents the implementation of DMAIC Six Sigma Methodology in automotive industry. This project is focused on a critical product which is T605039-003. The objective of the project is to increase the sigma level of the process to 3.5a. The project started with define phase which is problem identification. Pareto analysis was conducted to find out the critical defect for part T605 03 9-003. As a result, defect of burr at thread was selected for further study. The existing process sigma level is 3.02a. Measurement System Analysis (MSA) was carried out to validate the measurement system used. Next, the study continues with measure phase. GR&R study is conducted to verify the capability of the measurement equipment and from the result, most of the variation is due to the differences between parts and very little is due to measurement system error. This brings the project to the fourth phase which is the improve phase. A new process is developed to eliminate burr at thread from occurring. The percentage of reject is reduced to 1.59% whereas the sigma level is increased to 3.54a.
机译:实现高性能率是任何组织的目标之一,特别是在竞争的压力下。本文介绍了汽车行业DMAIC六西格玛方法的实施。该项目专注于T605039-003的关键产品。该项目的目的是将该过程的SIGMA水平增加到3.5A。该项目始于定义阶段,这是问题识别。进行了帕累托分析,以找出第T605 03 9-003部分的临界缺陷。结果,选择螺纹毛刺的缺陷进行进一步研究。现有的过程SIGMA级别为3.02A。进行测量系统分析(MSA)以验证使用的测量系统。接下来,继续测量阶段。进行GR&R研究以验证测量设备的能力,从结果中,大多数变化都是由于部件之间的差异而且很少是由于测量系统错误。这将项目带到了改进阶段的第四阶段。开发了一个新的进程,以消除来自发生的线程的毛刺。拒绝百分比减少到1.59%,而Σ水平增加到3.54A。

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