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首页> 外文期刊>Journal of the American Helicopter Society >Design, Analysis, and Characterization of Single Crystal Energy Harvesters for Rotorcraft Wireless Sensor Applications
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Design, Analysis, and Characterization of Single Crystal Energy Harvesters for Rotorcraft Wireless Sensor Applications

机译:用于旋翼飞机无线传感器应用的单晶能量采集器的设计,分析和表征

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Vibrational energy harvesting devices are a possible solution to provide adequate power for structural health monitoring by taking ambient vibrations and converting them into usable electric power. This work aims to quantify critical single crystal energy harvester design parameters by investigating lead magnesium niobate-lead titanate (PMN-PT) single crystal devices in long-duration, high-temperature, and high acceleration environments typical of rotorcraft applications, expanding the environmental parameters from current literature, and comparing them to conventional lead zirconite titanate (PZT) ceramics. The harvesters proved to be a reliable source of power generation and are practical for harvesting usage. The work also provides new data by expanding upon current test data sets by including device damping and scalability studies and by developing and testing a compact energy harvester more representative of true flight hardware. A laboratory test article produced 25 VRMS at 1.0 g base acceleration at room temperature and was stable for 120 h of continuous use. Its performance exhibited strong temperature dependence, which was lessened by using different material compositions. The output power of a prototype, 40-g compact harvester surpassed that of PZT devices and was sufficient for low-power sensors. At 1.0 g and room temperature, the single crystal harvester produced approximately three times the power of a PZT device. A scalability study was conducted to compare size and mass of a prototype compact device for use at a range of frequencies of interest, which showed the harvester is easily scaled with minimal design changes.
机译:振动能量收集装置是一种可能的解决方案,它可以通过吸收周围的振动并将其转换为可用的电能来为结构健康监测提供足够的电能。这项工作旨在通过研究在旋翼航空器应用所特有的长期,高温和高加速度环境中的铌酸铅镁钛酸铅(PMN-PT)单晶器件来量化关键的单晶能量收集器设计参数。根据现有文献,并将其与常规锆钛酸铅(PZT)陶瓷进行比较。事实证明,收割机是可靠的发电来源,非常适合收割使用。通过扩展当前的测试数据集(包括设备阻尼和可伸缩性研究)以及开发和测试更能代表真实飞行硬件的紧凑型能量采集器,该工作还提供了新的数据。实验室测试产品在室温下以1.0 g的基本加速度产生25 VRMS,并且在连续使用120小时后保持稳定。它的性能表现出强烈的温度依赖性,通过使用不同的材料成分可以降低这种依赖性。 40克紧凑型原型收割机的输出功率超过了PZT设备的输出功率,足以用于低功率传感器。在1.0 g的室温下,单晶收割机产生的功率约为PZT设备的三倍。进行了可扩展性研究,以比较可在感兴趣的频率范围内使用的紧凑型原型设备的尺寸和质量,这表明收割机易于缩放,而设计更改却很少。

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