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A Feasibility Study on Timber Damage Detection Using Piezoceramic-Transducer-Enabled Active Sensing

机译:使用压电陶瓷 - 换能器的活性感测的木材损伤检测的可行性研究

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摘要

In recent years, piezoelectric-based transducers and technologies have made significant progress towards structural health monitoring and damage evaluation for various metal and concrete structures. Timber is still commonly used as a construction material in practical engineering; however, there is a lack of research on the health monitoring of timber-based structures using piezoelectric-based transducers and methods. This paper conducts a feasibility study on timber damage detection using surface-mounted piezoelectric patches, which enable the stress-wave-based active sensing approach. Typical damage modes in timber frame structures, such as surface cracks and holes, were investigated in this study. In the active sensing approach, one piezoceramic transducer is used as an actuator to generate stress waves, which propagate along the surface of the timber structure, and other piezoceramic transducers function as sensors to detect the propagating stress waves. Defects, such as a crack or a hole, induce additional attenuation to the propagating stress wave. Based on this attenuation, the proposed method can detect the defects using the wavelet-packet-based damage index, demonstrating its implementation potential for real-time timber damage detection.
机译:近年来,压电基传感器和技术对各种金属和混凝土结构的结构健康监测和损伤评估取得了重大进展。木材仍然用作实际工程中的建筑材料;然而,使用压电基换能器和方法缺乏对木材基结构的健康监测研究。本文对木材损伤检测进行了可行性研究,采用表面安装的压电贴片,这使得基于应力波的有源感测方法。在本研究中研究了木材框架结构中的典型损伤模式,例如表面裂缝和孔。在主动传感方法中,一种压电陶瓷换能器用作致动器以产生应力波,其沿着木结构的表面传播,以及其他压电陶瓷换能器用作传感器以检测传播应力波。缺陷,例如裂缝或孔,引起额外的衰减到传播应力波。基于该衰减,所提出的方法可以使用基于小波包的损伤指数来检测缺陷,证明了其实时木材损坏检测的实现电位。

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