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Disbonding Effects on Elastic Wave Generation and Reception by Bonded Piezoelectric Sensor Systems

机译:键合压电传感器系统对弹性波产生和接收的解离作用

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摘要

Durable integrated sensor systems are needed for long-term health monitoring evaluations of aerospace systems. For legacy aircraft the primary means of implementing a sensor system will be through surface mounting or bonding of the sensors to the structure. Previous work has shown that the performance of surface-bonded piezo sensors can degrade due to environmental effects such as vibrations, temperature fluctuations, and substrate flexure motions. This performance degradation included sensor cracking, disbonding, and general loss of efficiency over time. In this research effort, the bonding state of a piezo sensor system was systematically studied to understand and improve the long-term durability and survivability of the sensor system. Analytic and computational models were developed and used to understand elastic wave generation and reception performance for various states of sensor disbond. Experimental studies were also conducted using scanning laser vibrometry, pitch-catch ultrasound, and pulse-echo ultrasound methods to understand elastic wave propagation effects in thin plate materials. Significant performance loss was observed for increasing levels of sensor disbond as well as characteristic frequency signatures which may be useful in understanding sensor performance levels for future structural health monitoring systems.
机译:航空系统的长期健康监测评估需要耐用的集成传感器系统。对于传统飞机而言,实现传感器系统的主要手段是通过表面安装或将传感器结合到结构上。先前的工作表明,由于环境影响(例如振动,温度波动和基板弯曲运动),表面结合型压电传感器的性能可能会降低。这种性能下降包括传感器开裂,松脱以及随着时间的流逝总体上效率下降。在这项研究工作中,系统地研究了压电传感器系统的键合状态,以了解和提高传感器系统的长期耐用性和生存能力。开发了分析和计算模型,并将其用于了解传感器剥离的各种状态下的弹性波生成和接收性能。还使用扫描激光振动法,俯仰捕捉超声和脉冲回波超声方法进行了实验研究,以了解弹性波在薄板材料中的传播效果。观察到随着传感器脱胶水平的增加以及特性频率信号的显着性能损失,这可能有助于理解未来结构健康监测系统的传感器性能水平。

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