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An Enhanced Experimental Facility for Durability and Performance Characterisation of Piezoelectric Transducers for Structural Health Monitoring

机译:用于结构健康监测的压电换能器的耐用性和性能表征的增强实验设施

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With any structural health monitoring (SHM) system, verification of the health of the sensing elements is essential in ensuring confidence in the measurements furnished by the system. In particular, SHM systems utilised for structural 'hot spot' monitoring applications will conceivably require transducers to operate reliably after sustained exposure to severe mechanical loading. Consequently, a good understanding of the long term mechanical durability performance of structurally integrated piezoelectric transducers is vital when designing and implementing robust SHM systems. An experimental facility has been developed at the Australian Defence Science and Technology Organisation (DSTO) capable of performing an autonomous long-term mechanical durability test on piezoceramic transducers. The Autonomous Mechanical Durability Experimentation and Analysis System (AMeDEAS) incorporates a general purpose data acquisition program controlling up to three 8-channel relay multiplexers and two instruments. AMeDEAS is highly flexible, allowing user-specified channel configurations and automatic interrogation of selected instruments. The system also interfaces with the uni-axial mechanical testing machine to provide control of the load sequence allowing transducer elements to be interrogated under stable load-free conditions after being subject to a predefined loading regime. AMeDEAS was used to investigate the fatigue characteristics of a low-profile layered piezoceramic transducer package developed by DSTO. A total of 16 transducers were tested under tension-dominated cyclic loading with peak-to-peak strain amplitude increasing from 400 με to a maximum of 3000 με, with periodic acoustic transduction efficiency and electromechanical impedance measurements taken throughout the test. This paper details the AMeDEAS and includes preliminary results which confirm the efficacy of the new facility.
机译:对于任何结构健康监测(SHM)系统,对传感元件的健康状况进行验证对于确保对系统提供的测量结果的信心至关重要。特别是,可以想象到,用于结构“热点”监视应用的SHM系统将要求换能器在持续暴露于严重的机械负载后可靠运行。因此,在设计和实现强大的SHM系统时,对结构集成的压电换能器的长期机械耐久性能有很好的了解至关重要。澳大利亚国防科学技术组织(DSTO)开发了一种实验设备,能够对压电陶瓷换能器进行自主的长期机械耐久性测试。自主机械耐久性试验和分析系统(AMeDEAS)包含通用数据采集程序,该程序可控制多达三个8通道中继多路复用器和两个仪器。 AMeDEAS高度灵活,允许用户指定通道配置并自动询问选定的仪器。该系统还与单轴机械测试仪连接,以提供对负载顺序的控制,从而允许传感器元件在受到预定的负载状态后,在稳定的无负载条件下被查询。 AMeDEAS用于研究由DSTO开发的低剖面分层压电陶瓷换能器封装的疲劳特性。在张力主导的循环载荷下测试了总共16个换能器,其峰峰值应变幅度从400με增加到最大3000με,并在整个测试过程中进行了周期性的声转换效率和机电阻抗测量。本文详细介绍了AMeDEAS,并提供了初步结果,这些结果证实了新设施的有效性。

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