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A Review on the Impact of Thermal Effects on Electro-Mechanical Impedance Technique-Based Structural Health Monitoring

  • 01-09-2025
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Abstract

The article delves into the critical role of piezoelectric materials, particularly PZT patches, in structural health monitoring (SHM) systems. It highlights how thermal effects can significantly impact the performance of these materials, leading to potential inaccuracies in damage detection. The review covers the fundamental properties of PZT materials, such as dielectric constant, piezoelectric coefficients, and elastic modulus, and how these properties vary with temperature. It also explores the hysteresis behavior of PZT materials under thermal loading, which can complicate the interpretation of SHM data. The article discusses various temperature compensation techniques, including empirical, analytical, and data-driven approaches, and their effectiveness in mitigating the impact of temperature on EMI responses. It also addresses the challenges in developing universal temperature compensation strategies due to the complex interactions between PZT materials, adhesives, and substrate materials. The review concludes by emphasizing the need for further research to enhance the reliability of SHM systems in fluctuating temperature environments, ensuring accurate and reliable structural health assessments.

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Title
A Review on the Impact of Thermal Effects on Electro-Mechanical Impedance Technique-Based Structural Health Monitoring
Authors
Tejas Shelgaonkar
Arun Narayanan
Umesh Basappa
Publication date
01-09-2025
Publisher
Springer US
Published in
Journal of Nondestructive Evaluation / Issue 3/2025
Print ISSN: 0195-9298
Electronic ISSN: 1573-4862
DOI
https://doi.org/10.1007/s10921-025-01217-6
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