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Definition of Engine Belt Length using the Statistic Dimensional Variation Analysis and Assembly Variation of Front Engine Accessories Drive

机译:发动机带长度的定义使用统计尺寸变化分析和前置发动机配件驱动器的装配变化

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This is a strong and solid methodology to define and/or verify how the dimensional schema of the parts and their statistical variation affect the assembly variation. This study has been done to fix an issue in the assembly line of a Cummins' customer. This is a problem that occurs during the assembly of the Linear Belt Tensioner. The voice of customer says "Many times it is too hard to assemble the Belt Tensioner!" The paper shows the analysis performed at Cummins Brazil. The analysis process utilized the Dimensional Variation Analysis methodology, statistical software - Minitab, Pro/Engineer and CETOL 6 Sigma to verify the length of the FEAD (Front Engine Drive Accessories) belt path. The results were compared with the variation of the Belt length. The voice of customer was proved by the three-dimensional DVA analysis. The design shows up to 16% of the FEADs could have problems during the assembly. The improvement in the assembly line and in the design has been defined based on these results and methodology.
机译:这是一个强大而坚实的方法,可以定义和/或验证部件的尺寸模式和统计变化的尺寸模式如何影响组装变化。这项研究已经完成了解决康明斯客户的装配线中的问题。这是在线性皮带张紧器组装过程中发生的问题。客户的声音说:“很多时候它太难组装了皮带张紧器!”本文显示了在康明斯巴西进行的分析。分析过程利用尺寸变化分析方法,统计软件 - Minitab,Pro / ENGINEER和CETOL 6 Sigma来验证FEAD(前发动机驱动器配件)带路径的长度。将结果与带长度的变化进行比较。三维DVA分析证明了客户的声音。该设计最多可显示在组装过程中可能存在问题。基于这些结果和方法,定义了组装线和设计中的改进。

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