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Piezoelectric Sensing Techniques in Structural Health Monitoring: A State-of-the-Art Review

机译:结构健康监测中的压电传感技术:最先进的评论

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摘要

Recently, there has been a growing interest in deploying smart materials as sensing components of structural health monitoring systems. In this arena, piezoelectric materials offer great promise for researchers to rapidly expand their many potential applications. The main goal of this study is to review the state-of-the-art piezoelectric-based sensing techniques that are currently used in the structural health monitoring area. These techniques range from piezoelectric electromechanical impedance and ultrasonic Lamb wave methods to a class of cutting-edge self-powered sensing systems. We present the principle of the piezoelectric effect and the underlying mechanisms used by the piezoelectric sensing methods to detect the structural response. Furthermore, the pros and cons of the current methodologies are discussed. In the end, we envision a role of the piezoelectric-based techniques in developing the next-generation self-monitoring and self-powering health monitoring systems.
机译:最近,在将智能材料部署为感测结构健康监测系统的传感组件,已经存在日益增长的兴趣。在这个竞技场中,压电材料为研究人员提供了很大的承诺,可以迅速扩大许多潜在的应用。本研究的主要目的是审查目前用于结构健康监测区域的最先进的压电传感技术。这些技术范围从压电机电阻抗和超声羔羊波方法到一类尖端自给自源传感系统。我们提出了压电效应的原理和压电传感方法使用的潜在机制来检测结构响应。此外,讨论了目前方法的利弊。最后,我们设想了基于压电的技术在开发下一代自我监控和自我供电健康监测系统方面的作用。

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