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Piezoelectric transducers for structural health monitoring of joint structures in cylinders: A wave-based design approach

  • Wenjun Wang
  • , Lin Li
  • , Yu Fan*
  • , Zhou Jiang
  • *此作品的通讯作者
  • Beihang University
  • Beijing Key Laboratory of Aero-Engine Structure and Strength

科研成果: 期刊稿件文章同行评审

摘要

Joint structures, such as riveting, hinges, and flanges, are widely used in complex mechanical systems. A small unexpected change of a joint can lead to complicated wave-scattering in its connected waveguides. The conversion between wave modes can be used to quantify the variation of the connection status of joints. This gives rise to the challenge of exciting and sensing only one specific wave mode in practice. In this paper, transmitted wave amplitudes of a flange joint are first calculated by the wave finite element method (WFEM) to study the quantitative relationship between the local stiffness changes of the damaged site and the wave-mode conversion. Wave-mode piezoelectric transducers are subsequently designed for torsional, longitudinal, and flexural waves in cylindrical waveguides. The idea is to use the distribution and interconnection of the piezoelectric materials to cancel the charge contributed from the non-targeting waves. We conducted numerical simulations to demonstrate the selective coupling features of the designed wave transducers and found difference of several orders of magnitude in voltages between targeting wave mode and other wave modes. Four selected wave transducers were then extended to monitor the connection status of the flange. The wave-scattering features in the simulation and WFEM were verified to be in good agreement.

源语言英语
文章编号601
期刊Sensors
20
3
DOI
出版状态已出版 - 1 2月 2020

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