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首页> 外文期刊>Smart Materials & Structures >Wearable inertial energy harvester with sputtered bimorph lead zirconate titanate (PZT) thin-film beams
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Wearable inertial energy harvester with sputtered bimorph lead zirconate titanate (PZT) thin-film beams

机译:可穿戴惯性能量收割机与溅射双镁铅锆钛酸锆(PZT)薄膜束

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摘要

Energy harvesting from human motion addresses the growing need for self-powered wearable health monitoring systems which require 24/7 operation. Human motion is characterized by low and irregular frequencies, large amplitudes, and multi-axial motion, all of which limit the performance of conventional translational energy harvesters. An eccentric rotor-based rotational approach originally used in self-winding watches has been adopted to address the challenge. This paper presents a three-dimensional generalized rotational harvester model that considers both linear and rotational excitations. A hypothetical power upper bound for such architectures derived using this generalized model demonstrated the possibility for harvesting significantly more energy compared to existing devices. A wrist-worn piezoelectric rotational energy harvester was designed and fabricated attempting to narrow this gap between existing devices and the theoretical upper bound. The harvester utilizes sputtered bimorph PZT/nickel/PZT thin-film beams to accommodate the need for both flexibility and high piezoelectric figure of merit in order to realize a multi-beam wearable harvester. The prototype was characterized using a bench-top swing arm set-up to validate the system-level model, which provides many degrees of freedom for optimization.
机译:人类运动的能量收集解决了需要24/7操作的自动穿衣健康监测系统的需求。人体运动的特征在于低且不正常的频率,大幅度和多轴运动,所有这些都限制了传统的平移能量收割机的性能。已经采用了一种偏心转子的旋转方法,最初用于自缠绕手表以解决挑战。本文介绍了三维广义旋转收割机模型,既考虑了线性和旋转激励。使用该广义模型导出的这种架构的假设电力上限证明了与现有设备相比,对能量显着更高的能量的可能性。设计并制造了腕磨损的压电旋转能量收割机,试图缩小现有装置和理论上限之间的这种间隙。收割机利用溅射的Bimorph PZT /镍/ PZT薄膜梁,以适应灵活性和高压电值的优点,以实现多梁可穿戴收割机。原型的特征在于使用台式摆动臂设置,以验证系统级模型,该模型为优化提供了多种自由度。

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