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Quantification and reduction of dynamically induced errors in coordinate measuring machines.

机译:量化和减少坐标测量机中的动态误差。

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摘要

Coordinate Measuring Machines (CMMs) are often programmed to operate at low operating speeds to reduce the negative effects of self-induced vibrations on the measurements obtained. Although these conservative operating speeds reduce structural vibration, they are detrimental to process productivity when CMMs are incorporated into a mass production environment. The trade-off between operating speed and measurement quality is well known, but up to this point a systematic approach for selecting appropriate measuring speeds has been unavailable.;In this dissertation, a procedure for selecting time-optimal operating parameters used to construct motion trajectories for specified measuring paths is presented. In addition, an enhanced motion controller for use with the optimization strategy to increase CMM productivity is developed and experimentally evaluated. In Chapter 2, experimental results illustrating the effects of measurement speed on measurement quality are given. Chapter 3 is a comprehensive Analysis of Variance (ANOVA) study on the extent to which the individual factors affecting measurement time affect measurement quality. In Chapter 4, measurement quality models, based on first principles, modal analysis and experimental observations are developed for use with the optimization strategy in Chapter 5. In Chapter 6, the enhanced motion controller for CMMs is developed and analyzed.;Experimental results of the optimization strategy show a significant reduction in measuring time (e.g. 25%) compared to conventional CMM speeds, without statistically significant differences in the resulting measurement quality. The optimization strategy also allows for sensitivity studies, which enable machine designers to explore the effects of changing machine characteristics on CMM productivity.;The enhanced CMM motion controller design is realized through shaping controller inputs. The new shaping technique, designated Feedforward Filtering, is based on Input Command Preshaping and digital signal processing. Experimental results indicate that reductions in measurement time may be obtained for situations where high measurement quality is desired.
机译:坐标测量机(CMM)通常被编程为在低运行速度下运行,以减少自感应振动对所获得的测量结果的负面影响。尽管这些保守的运行速度降低了结构振动,但是当将CMM集成到批量生产环境中时,它们不利于过程生产率。在工作速度和测量质量之间进行权衡是众所周知的,但是到目前为止,还没有一种系统的方法来选择合适的测量速度。在本论文中,本文选择了用于构建运动轨迹的时间最优操作参数的程序。给出了指定的测量路径。此外,还开发了一种用于优化策略以提高CMM生产率的增强型运动控制器,并进行了实验评估。在第二章中,给出了说明测量速度对测量质量的影响的实验结果。第3章对方差分析(ANOVA)进行了全面的研究,探讨了影响测量时间的各个因素对测量质量的影响程度。在第4章中,基于第一原理,模态分析和实验观察结果开发了测量质量模型,以与第5章中的优化策略一起使用。在第6章中,开发并分析了用于CMM的增强型运动控制器。与传统的CMM速度相比,优化策略显示出测量时间显着减少(例如25%),而所得测量质量在统计上没有显着差异。优化策略还允许进行敏感性研究,使机器设计人员能够探索变化的机器特性对CMM生产率的影响。增强的CMM运动控制器设计是通过整形控制器输入来实现的。被称为前馈滤波的新整形技术基于输入命令预整形和数字信号处理。实验结果表明,对于需要高测量质量的情况,可以减少测量时间。

著录项

  • 作者

    Jones, Steven Donald.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.;Engineering Industrial.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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