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Application of Electromechanical Impedance Technique for Engineering Structures: Review and Future Issues

机译:机电阻抗技术在工程结构中的应用:回顾与未来问题

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The recent advent of highly durable engineering materials and the advancement of latest structural design theories have made possible the fabrication of more efficient engineering structures. However, the safety and reliability of these structures remains the primary challenge and concern for engineers. Especially, for those structures which involve human traffic and huge investments such as the aerospace structures and bridges. Therefore, there is a compelling need to have high-quality online structural health monitoring (SHM) of such structures. The development of a real-time, in-service, and smart material-based SHM method has recently attracted the interest of a large number of academic and industrial researchers. In the recent past, piezoceramic (PZT) transducer has evolved as an efficient smart material, which is usually employed in electro mechanical impedance (EMI) and guided ultrasonic wave propagation techniques. In EMI technique, a PZT transducer interact with the host structure to result in unique health signature, as an inverse function of structural impedance, when it is subjected to high-frequency structural excitations in the presence of electric field. Using the self-actuating and sensing capabilities of PZT transducers, the EMI models attempted to detect loadings on, and damages in, the structures to be monitored. This article reviews some of the advancements in the field of PZT-based SHM made over the past two decades in engineering structures. This article also provides an insight into the possible future work and improvements required for PZT-based EMI technique.
机译:高耐用性工程材料的最新出现以及最新结构设计理论的发展使得制造更高效的工程结构成为可能。但是,这些结构的安全性和可靠性仍然是工程师面临的主要挑战和关注点。特别是对于那些涉及人流量和巨额投资的结构,例如航空航天结构和桥梁。因此,迫切需要对此类结构进行高质量的在线结构健康监视(SHM)。实时,在役,基于智能材料的SHM方法的开发最近吸引了众多学术和工业研究人员的兴趣。在最近的过去,压电陶瓷(PZT)换能器已经发展成为一种高效的智能材料,通常用于机电阻抗(EMI)和导向超声波传播技术中。在EMI技术中,当PZT换能器在电场中受到高频结构激励时,它会与主体结构相互作用,从而产生独特的健康特征,这是结构阻抗的反函数。 EMI模型使用PZT换能器的自致动和感应功能,试图检测要监视的结构上的载荷和损伤。本文回顾了过去二十年来在工程结构中基于PZT的SHM领域取得的一些进展。本文还提供了对基于PZT的EMI技术可能需要进行的未来工作和改进的见解。

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