首页> 外文学位 >APPLICATION OF ELECTRONIC SPECKLE PATTERN INTERFEROMETRY TO THE STUDY OF THREE-DIMENSIONAL MECHANICAL VIBRATIONS (VIBRATION).
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APPLICATION OF ELECTRONIC SPECKLE PATTERN INTERFEROMETRY TO THE STUDY OF THREE-DIMENSIONAL MECHANICAL VIBRATIONS (VIBRATION).

机译:电子散斑图样干涉在三维机械振动研究中的应用(振动)。

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摘要

Available from UMI in association with The British Library.; Electronic speckle pattern interferometry (ESPI) has become an established technique for mechanical vibration analysis, but in the past has been restricted to uniaxial measurements and has suffered from producing results which require skilled interpretation. The work reported here has extended the range of application of the technique to include three-dimensional vibration studies, and has made progress in automating the acquisition and processing of data. After establishing the importance of empirical vibration analysis and the practical advantages of ESPI, the theoretical requirements for measuring three-dimensional motion are considered. An experimental rig has been constructed using a continuous wave laser which has demonstrated that ESPI is capable of measuring time-averaged in-plane vibrations, an ability which was previously in some doubt. The rig has been used to study the three-dimensional resonant behaviour of simple structures and real engineering components in laboratory conditions. Some limitations were encountered and, in order to overcome these, a pulsed laser was introduced to the system. This has enabled the method to be extended to unstable objects, large amplitudes and non-resonant behaviour. Image processing and phase-stepping techniques have also been applied, enabling quantitative in-plane and out-of-plane displacement plots to be computed from the ESPI data. Experimental results are presented showing modal analyses of flat plates, an ultrasonic forming die, a turbocharger blade and an ultrasonic cutting system. The application of pulsed ESPI to the study of travelling waves, unstable objects and factory environment measurements is also demonstrated. The performance of three-dimensional ESPI is compared with alternative techniques, and the potential for further improving the technique is discussed. It is concluded that the method offers particular advantages for some types of study, and that it compliments the existing range of empirical techniques.
机译:可从UMI与大英图书馆联合获得。电子散斑干涉法(ESPI)已成为机械振动分析的一项既定技术,但过去仅限于单轴测量,并且产生的结果需要熟练的解释。此处报道的工作将技术的应用范围扩展到了三维振动研究,并在自动化数据采集和处理方面取得了进展。在确定经验振动分析的重要性和ESPI的实际优势之后,考虑了测量三维运动的理论要求。已经使用连续波激光器构造了一个实验设备,该设备证明了ESPI能够测量平均时间的平面内振动,这种能力以前是令人怀疑的。该装置已用于研究简单结构和实际工程组件在实验室条件下的三维共振行为。遇到了一些限制,为了克服这些限制,向系统引入了脉冲激光。这使得该方法可以扩展到不稳定的物体,大振幅和非共振行​​为。图像处理和相位步进技术也已应用,可以从ESPI数据计算出定量的平面内和平面外位移图。给出的实验结果显示了平板,超声成型模具,涡轮增压器叶片和超声切割系统的模态分析。还演示了脉冲ESPI在行波,不稳定物体和工厂环境测量研究中的应用。将三维ESPI的性能与替代技术进行了比较,并讨论了进一步改进该技术的潜力。结论是,该方法为某些类型的研究提供了特殊的优势,并且补充了现有的经验技术范围。

著录项

  • 作者

    SHELLABEAR, MICHAEL C.;

  • 作者单位

    University of Technology, Loughborough (United Kingdom).;

  • 授予单位 University of Technology, Loughborough (United Kingdom).;
  • 学科 Engineering Mechanical.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 223 p.
  • 总页数 223
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:50:28

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