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首页> 外文期刊>Optica applicata >Measurement of dynamic strain using an optic fibre system in adaptive composite laminates with an integrated piezoelectric sensor/actuator
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Measurement of dynamic strain using an optic fibre system in adaptive composite laminates with an integrated piezoelectric sensor/actuator

机译:使用光纤系统在具有集成压电传感器/执行器的自适应复合材料层压板中测量动态应变

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摘要

This study seeks the development of adaptive composites capable to monitor and actively damp vibrations. In the proposed material, vibrations measurements are performed by an embedded low finesse optical fibre extrinsic Fabry-Perot interferometer, while active damping will be performed by embedded piezoelectric ceramics. This paper focuses on the development of the monitoring procedure. The proposed interrogation procedure for the low finesse optical fibre extrinsic Fabry-Perot interferometer was successfully used to monitor the composite plate when submitted to four-point bending dynamic tests at different frequencies. The embedding of both sensing and actuating components in carbon-fibre reinforced composite laminates is also presented. In the case of the actuator, the efficiency of the embedding process was merely analysed from the capability of the piezoelectric ceramic to monitor dynamic strain of the composite using the PZT piezoelectric inverse effect.
机译:这项研究寻求开发能够监测和主动抑制振动的自适应复合材料。在建议的材料中,振动测量是通过嵌入式低精细光纤非本征法布里-珀罗干涉仪进行的,而有源阻尼将通过嵌入式压电陶瓷来进行。本文着重于监控程序的开发。提出的低精细光纤非本征法布里-珀罗干涉仪的询问程序在进行不同频率的四点弯曲动态测试时,已成功用于监测复合板。还介绍了将传感组件和促动组件嵌入碳纤维增强复合材料层压板中的方法。对于致动器,仅从压电陶瓷利用PZT压电逆效应监测复合材料动态应变的能力来分析嵌入过程的效率。

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