4.7 Article

SH Guided Wave Tomography for Structural Health Monitoring Based on Antiparallel Thickness-Shear (d15) Piezoelectric Transducers

期刊

IEEE SENSORS JOURNAL
卷 21, 期 24, 页码 27385-27392

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSEN.2021.3127005

关键词

Tomography; Image reconstruction; Dispersion; Strips; Sensors; Diffraction; Corrosion; Guided wave tomography; shear horizontal waves; piezoelectric transducers; thickness-shear

资金

  1. National Natural Science Foundation of China [11890684]

向作者/读者索取更多资源

A tomography method based on dispersive shear horizontal waves is proposed for structural health monitoring in the petrochemical industry, showing high accuracy and resolution in reconstructions. The method is expected to be widely used in the industry in the near future.
Detecting corrosion damage is critical in the petrochemical industry as the wall thinning in tanks or pipelines may cause severe accidents, inducing loss of economics or even lives. Guided wave based tomography is a promising technique which can effectively estimate the remaining wall thickness based on the wave dispersion curves. In this work, we proposed a tomography method for structural health monitoring based the dispersive shear horizontal waves (SH1), which are excited by two antiparallel thickness-shear (d(15)) piezoelectric strips (APS). The probability factor and continuous condition are both introduced to the classic algebraic reconstruction technique (ART-PC) to achieve a convenient and efficient high quality reconstruction. Then the tomography experiment is conducted on a 6mm-thick aluminum plate with a 1.5mm-deep, 50mm diameter blind hole and the results show that the hole can be well reconstructed. Furthermore, the inversion image reconstructed by using ART-PC algorithm has a high accuracy and resolution, especially when compared with that reconstructed by using the classic algorithms. The proposed SH1 wave based tomography method in this work is expected to be widely used in petrochemical industries in near future.

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