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综述:用于实验力学和结构健康监测的非接触式全场应变映射方法

A Review: Non-Contact and Full-Field Strain Mapping Methods for Experimental Mechanics and Structural Health Monitoring.

作者信息

Meng Wei, Bachilo Sergei M, Weisman R Bruce, Nagarajaiah Satish

机构信息

Department of Civil and Environmental Engineering, Rice University, Houston, TX 77005, USA.

Department of Chemistry, Rice University, Houston, TX 77005, USA.

出版信息

Sensors (Basel). 2024 Oct 12;24(20):6573. doi: 10.3390/s24206573.

Abstract

Non-contact and full-field strain mapping captures strain across an entire surface, providing a complete two-dimensional (2D) strain distribution without attachment to sensors. It is an essential technique with wide-ranging applications across various industries, significantly contributing to experimental mechanics and structural health monitoring. Although there have been reviews that focus on specific methods, such as interferometric techniques or carbon nanotube-based strain sensors, a comprehensive comparison that evaluates these diverse methods together is lacking. This paper addresses this gap by focusing on strain mapping techniques specifically used in experimental mechanics and structural health monitoring. The fundamental principles of each method are illustrated with specific applications. Their performance characteristics are compared and analyzed to highlight strengths and limitations. The review concludes by discussing future challenges in strain mapping, providing insights into potential advancements and developments in this critical field.

摘要

非接触式全场应变映射可捕获整个表面的应变,无需连接传感器即可提供完整的二维(2D)应变分布。它是一项重要技术,在各个行业都有广泛应用,对实验力学和结构健康监测有重大贡献。尽管已有一些综述聚焦于特定方法,如干涉技术或基于碳纳米管的应变传感器,但缺乏对这些不同方法进行综合评估的比较。本文通过关注实验力学和结构健康监测中具体使用的应变映射技术来填补这一空白。每种方法的基本原理都通过具体应用进行了说明。对它们的性能特征进行了比较和分析,以突出优点和局限性。综述最后讨论了应变映射未来面临的挑战,为这一关键领域的潜在进展和发展提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8864/11510936/9643b4a130e6/sensors-24-06573-g001.jpg

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