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Exact Shear-Lag Solution for Guided Waves Tuning with Piezoelectric-Wafer Active Sensors

机译:压电晶片有源传感器用于导波调谐的精确剪切滞后解决方案

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摘要

This paper addresses some unresolved predictive modeling issues related to the use of piezoelectric-wafer active sensors for ultrasonic structural health monitoring. An exact model for the shear-lag transfer between the piezoelectric-wafer active sensor transducer and the structure in the presence of N generic guided wave modes is derived from first principles using the normal-mode expansion formulation. The resulting integral-differential equation is solved using the variational iteration approach. The resulting solution is used to derive an improved model for the tuning between piezoelectric-wafer active sensor transducers and the multimodal guided waves used in ultrasonic structural-health-monitoring applications. The numerical predictions generated by the improved tuning model are compared with experimental results obtained through pitch-catch experiments between two 7 mm piezoelectric-wafer active sensor transducers placed on a 1-mm 2024-T3 aluminum plate. The 10-700 kHz frequency range was explored. It was concluded that the improved model using the exact shear-lag solution matches much better the experimental results than previous models. Further theoretical and experimental work is warranted as a follow-up on the work reported in this paper to study the accuracy and convergence properties of the solution, to explore experimental comparison beyond the Al-mode cutoff frequency, and to extend the approach to layered structures and composite materials.
机译:本文解决了与压电晶片有源传感器用于超声结构健康监测有关的一些未解决的预测建模问题。使用正模扩展公式从第一原理中推导出存在N个通用导波模式时压电晶片有源传感器换能器与结构之间的剪切滞后传递的精确模型。使用变分迭代方法求解得到的积分微分方程。所得解决方案用于推导改进的模型,以在压电晶片有源传感器换能器与超声结构健康监测应用中使用的多峰导波之间进行调谐。通过改进的调谐模型生成的数值预测与通过放置在1毫米2024-T3铝板上的两个7毫米压电晶片有源传感器换能器之间的音高捕捉实验获得的实验结果进行了比较。探索了10-700 kHz的频率范围。结论是,使用精确剪力滞解的改进模型比以前的模型更好地匹配了实验结果。作为本文报道的工作的后续研究,有必要进行进一步的理论和实验工作,以研究溶液的精度和收敛性,探索Al模式截止频率以外的实验比较,并将方法扩展到分层结构和复合材料。

著录项

  • 来源
    《AIAA Journal》 |2012年第11期|2285-2294|共10页
  • 作者单位

    University of South Carolina, Columbia, SC 29208;

    University of South Carolina, Columbia, SC 29208;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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