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Variability characterization and tolerancing for automotive body assembly.

机译:汽车车身装配的可变性表征和公差。

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摘要

Automobile bodies must be built to have high dimensional integrity at competitive costs in the current environment of increasing competitions. To assure the dimensional integrity of the automobile body, design engineers always assign tight tolerances, which will cause higher cost. Manufacturing engineers, on the contrary, prefer loose tolerances, which make production easier and less expensive. Since excessive cost or poorer quality will eventually result in a market share loss, a balance between a good quality as well as a sensible production cost has become a major task for researchers to work on. Currently, sheet metal parts are assumed to be rigid bodies when conducting tolerances stack-up analysis. And the addition theory of variance is applied in accumulating the tolerances of components. The common experience found in auto body industries, though, does not agree with the results from the tolerance analysis based on rigid bodies. In fact, the tolerance analysis results always over-estimate the tolerance stack-up for compliant sheet metal assemblies, while they always under-estimate that for closure panel settings.; The objectives of this research are to develop a methodology for (i) modeling compliant sheet metal assemblies and panel settings more accurately, (ii) predicting tolerances of assemblies more effectively, and (iii) improving robustness of panel setting processes. A systematic approach has been developed to conducting tolerance analysis for sheet metal assemblies and panel settings in auto body assembly by considering (i) the rigidity evolution of compliant sheet metal assembly and (ii) the kinematic effect in panel settings. The major accomplishments are summarized as the followings: (1) Characterization of dimensional variability and rigidity evolution for auto body assembly, (2) A methodology is developed for tolerance analysis modeling of compliant sheet metal assemblies, (3) A 3-D tolerance analysis modeling technique is developed for rigid body assemblies, and (4) A framework is proposed for robust process design.
机译:在当前竞争日益激烈的环境中,必须以具有竞争力的成本制造具有高尺寸完整性的车身。为了确保车身的尺寸完整性,设计工程师总是分配严格的公差,这将导致更高的成本。相反,制造工程师更喜欢宽松的公差,这使生产更容易且成本更低。由于过高的成本或较差的质量最终会导致市场份额损失,因此,在质量与合理的生产成本之间取得平衡已成为研究人员进行研究的主要任务。当前,在进行公差累积分析时,钣金零件被假定为刚体。并采用方差加法理论累积零件的公差。但是,在车身行业中发现的常见经验与基于刚体的公差分析的结果不一致。实际上,公差分析结果总是高估了顺应性钣金组件的公差累积,而它们总是低估了闭合面板设置的公差累积。这项研究的目的是开发一种方法,以便(i)更准确地对顺应的钣金组件和面板设置进行建模,(ii)更有效地预测组件的公差,以及(iii)提高面板设置过程的鲁棒性。通过考虑(i)顺应性钣金组件的刚度演变和(ii)面板设置中的运动学影响,已开发出一种系统的方法来对车身装配中的钣金组件和面板设置进行公差分析。主要成就概括如下:(1)表征车​​身装配的尺寸变异性和刚度演变;(2)开发了用于对顺应钣金件装配进行公差分析建模的方法;(3)3-D公差分析开发了用于刚体装配的建模技术,以及(4)提出了用于稳健过程设计的框架。

著录项

  • 作者

    Lee, Hsin-Wei.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.; Engineering Automotive.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;自动化技术及设备;
  • 关键词

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