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Recent Advances in Piezoelectric Wafer Active Sensors for Structural Health Monitoring Applications

机译:压电晶片活性传感器的最新进展,用于结构健康监测应用

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In this paper, some recent piezoelectric wafer active sensors (PWAS) progress achieved in our laboratory for active materials and smart structures (LAMSS) at the University of South Carolina: http: //www.me.sc.edu/research/lamss/ group is presented. First, the characterization of the PWAS materials shows that no significant change in the microstructure after exposure to high temperature and nuclear radiation, and the PWAS transducer can be used in harsh environments for structural health monitoring (SHM) applications. Next, PWAS active sensing of various damage types in aluminum and composite structures are explored. PWAS transducers can successfully detect the simulated crack and corrosion damage in aluminum plates through the wavefield analysis, and the simulated delamination damage in composite plates through the damage imaging method. Finally, the novel use of PWAS transducers as acoustic emission (AE) sensors for in situ AE detection during fatigue crack growth is presented. The time of arrival of AE signals at multiple PWAS transducers confirms that the AE signals are originating from the crack, and that the amplitude decay due to geometric spreading is observed.
机译:在本文中,我们在南卡罗来纳大学的主动材料和智能结构(LAMSS)的实验室中实现了一些最近的压电晶片活性传感器(PWA)进展:http://www.me.sc.edu/research/lamss/组出现了。首先,PWAS材料的表征表明,暴露于高温和核辐射后的微观结构的显着变化,并且PWAS换能器可用于结构健康监测(SHM)应用的恶劣环境中。接下来,探讨了铝和复合结构中各种损坏类型的PWA活性感测。通过波场分析,PWA传感器可以成功地检测铝板中的模拟裂纹和腐蚀损坏,以及通过损伤成像方法的复合板中的模拟分层损坏。最后,介绍了在疲劳裂纹增长期间对原位AE检测的声发射器作为声学发射(AE)传感器的新颖使用。在多个PWA换能器处的AE信号到达时间确认AE信号源自裂缝,并且观察到由于几何扩展引起的幅度衰减。

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