首页> 外文会议>PVP2011;ASME Pressure Vessels and Piping conference >PREDICTIVE SIMULATION IN STRUCTURAL HEALTH MONITORING WITH PIEZOELECTRIC WAFER ACTIVE SENSORS FOR RISK-INFORMED IN-SERVICE INSPECTION
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PREDICTIVE SIMULATION IN STRUCTURAL HEALTH MONITORING WITH PIEZOELECTRIC WAFER ACTIVE SENSORS FOR RISK-INFORMED IN-SERVICE INSPECTION

机译:压电晶片主动传感器对结构进行风险监测的健康状况预测模拟

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Piezoelectric wafer active sensors (PWAS) are lightweight and inexpensive enablers for a large class of structural health monitoring (SHM) applications. The presentation will start with a brief review of PWAS physical principles and basic modeling. Then, the presentation will consider the several ways in which PWAS can be used for damage detection: (a) embedded guided-wave ultrasonics, i.e., pitch-catch, pulse-echo, phased arrays, thickness mode; (b) high-frequency modal sensing, i.e., the electro-mechanical (E/M) impedance method; (c) passive detection, i.e., acoustic emission and impact detection. Emphasis will be placed on recent developments. Special attention will be given to the mechatronics predictive modeling of the complete cycle from electrical excitation through piezoelectric transduction, ultrasonic acoustic waves, and finally reverse piezoelectric transduction to generate the received electric signal. Power and energy aspects of this process will be considered and discussed. The presentation will end with conclusions and suggestions for further work.
机译:压电晶片有源传感器(PWAS)是轻型且价格便宜的使能器,可用于各种结构健康监测(SHM)应用。演讲将首先简要回顾PWAS的物理原理和基本模型。然后,演讲将考虑使用PWAS进行损伤检测的几种方法:(a)嵌入式导波超声,即音高捕获,脉冲回波,相控阵,厚度模式; (b)高频模态传感,即机电(E / M)阻抗法; (c)被动检测,即声发射和冲击检测。重点将放在最近的事态发展上。从电激发到压电换能,超声波和最终反向压电换能以生成接收到的电信号的整个周期的机电一体化预测模型将受到特别关注。将考虑和讨论此过程的功率和能源方面。演讲将以结论和建议作为进一步工作的结尾。

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