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Evaluation of piezoelectret foam in a multilayer stack configuration for low-level vibration energy harvesting applications

机译:多层堆叠配置中的压电驻极体泡沫评估,用于低水平振动能量收集应用

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Electronic devices are high demand commodities in today's world, and such devices will continue increasing in popularity. Currently, batteries are implemented to provide power to these devices; however, the need for battery replacement, their cost, and the waste associated with battery disposal present a need for advances in self-powered technology. Energy harvesting technology has great potential to alleviate the drawbacks of batteries. In this work, a novel piezoelectret foam material is investigated for low-level energy harvesting. Specifically, piezoelectret foam assembled in a multilayer stack configuration is explored. Modeling and experimentation of the stack behavior when excited in compression at low frequencies are performed to investigate piezoelectret foam as a multilayer energy harvester. An examination of modeling piezoelectret foam as a stack with an equivalent circuit is made following recently published work and is used in this study. A 20-layer prototype device is fabricated and experimentally tested via harmonic base excitation. Electromechanical testing is performed by compressing the foam stack to obtain output electrical energy; consequently, allowing the frequency response between input mechanical energy and output electrical energy to be developed. Modeling results are compared to the experimental measurements to assess the fidelity of the model. Lastly, energy harvesting experimentation in which the device is subject to harmonic base excitation at the natural frequency is conducted to determine the ability of the piezoelectret foam stack to successfully charge a capacitor.
机译:电子设备在今天的世界中是高需求的商品,这些设备将继续越来越受欢迎。目前,实施电池以向这些设备提供电力;然而,需要更换电池的需求,其成本和与电池处理相关的废物具有自动技术的进步。能量收集技术具有很大的潜力,可缓解电池的缺点。在这项工作中,研究了一种新型压电电泡沫材料以进行低水平能量收集。具体地,探讨了在多层堆叠配置中组装的压电电保泡沫。在低频压缩中激发时堆叠行为的建模与实验,以研究压电电泡沫作为多层能量收割机。在最近公布的工作之后,在最近公布的工作中进行了作为具有等效电路的堆叠的模型压电泡沫的检查,并在本研究中使用。通过谐波基础激发制造和经验测试20层原型装置。通过压缩泡沫堆叠来进行机电测试以获得输出电能;因此,允许开发输入机械能和输出电能之间的频率响应。将建模结果与实验测量进行比较,以评估模型的保真度。最后,进行了能量收集实验,其中该装置在固有频率处受到谐波基座激励的实验,以确定压电电泡沫堆叠成功充电电容器的能力。

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