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A methodology for optimal door fit in automobile body manufacturing.

机译:在车身制造中优化门装配的方法。

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摘要

The dimensional quality of an automobile door directly affects the quality of door fit on the car body. An inadequate door fit will not only affect the aesthetic value of the vehicle, but will also cause functional problems such as wind noise, water leakage, and difficulty in door closing. The automation of door fitting also requires the dimensional variations of both doors and body side openings to be controlled.;The objective of this thesis is to develop a systematic approach for the reduction of the dimensional variation of automobile doors on the body side opening, through effective utilization of measurement data for process control.;Three state-of-the-art dimensional measurement systems, hard gauge, Coordinate Measuring Machine (CMM), and in-line Optical CMM (OCMM) are compared and evaluated from the view point of, (1) process parameter identification, and (2) process monitoring, so that they can be effectively applied for process control.;The door fitting process is formulated as a general optimization problem. Three quantitative indices are defined to evaluate the dimensional quality of door fit. They are: (1) gap width deviation, (2) gap parallelism, and (3) car-to-car variation. Based on these indices, simulations are subsequently conducted to provide guidelines for door gap design, and criteria for upstream process variation reduction. A systematic computer-aided fixture adjustment scheme is then proposed, and the adequacy of a feature modeling is verified by experiment.;Variation of the door dimension is attributed to the variations of the assembly and the stamping processes. Variation reduction of the assembly process is approached through principal component factor analysis and solved case by case. A two-level classification scheme is proposed for efficient process diagnosis, and is demonstrated to be effective for process fault classification using in-line OCMM data.;Variation of the stamping process is broken down into run-to-run variation and within-run variation, and is quantified using CMM data. The relationship between the two types of variation is analyzed. A successful case study is presented for within-run variation reduction using experimental parameter design.
机译:汽车门的尺寸质量直接影响车门在车身上的安装质量。门的装配不当不仅会影响车辆的美学价值,还会引起功能问题,例如风声,漏水和关门困难。门装配的自动化还需要控制门和车身侧开口的尺寸变化。;本论文的目的是开发一种系统的方法,通过减少汽车门在车身侧开口上的尺寸变化有效地利用测量数据进行过程控制。从以下角度比较和评估了三个最先进的尺寸测量系统:硬测量仪,坐标测量机(CMM)和在线光学CMM(OCMM)。 ,(1)过程参数识别和(2)过程监控,以便可以将它们有效地应用于过程控制。;门装配过程被公式化为一般的优化问题。定义了三个定量指标来评估门装配的尺寸质量。它们是:(1)间隙宽度偏差,(2)间隙平行度和(3)车对车的变化。基于这些指标,随后进行仿真以提供门间隙设计的指导方针以及减少上游工艺偏差的标准。提出了系统的计算机辅助夹具调整方案,并通过实验验证了特征建模的充分性。门尺寸的变化归因于装配和冲压工艺的变化。通过主成分因子分析可以减少装配过程的变化,并逐案解决。提出了两级分类方案以进行有效的过程诊断,并证明了使用在线OCMM数据可有效地进行过程故障分类。;冲压过程的变化可分为批间差异和批内差异变化,并使用CMM数据进行量化。分析了两种类型的变化之间的关系。提出了一个成功的案例研究,用于使用实验参数设计减少运行中的变化。

著录项

  • 作者

    Wu, Shing-Kuo.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Automotive.;Engineering Industrial.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 220 p.
  • 总页数 220
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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