Multi-layer Noncontact Disk-shaped Electrostatic Microgenerator

B.Q. Wang, Y.X. Chen, L.H. Tang, K. Tao
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Abstract

In this work, we present the fabrication and characterization of a novel multi-layer noncontact disk-shaped electrostatic microgenerator. The microgenerator aims to harvest kinetic energy from rotary motion in our daily life. The multi-layer structure is composed of pairs of energy harvesting units. Each unit consists of two parts: the rotational blades with copper electrodes that are attached to the center shaft and the stationary disk that is fixed on the external barrier structure. Compared to the previous two-plate structure, the current device has two unique merits: First, both sides of the stationary disk are coated with electret material and are corona charged. It is beneficial to maximize the output power density of the whole device. Second, with the help of the micro rotary bearing, multilayer rotary structure has been successfully implemented for the first time. Therefore, the overall performance has been multiplied by several folds and high output power can be readily achieved.
多层非接触盘形静电微型发电机
在这项工作中,我们提出了一种新型多层非接触盘形静电微发电机的制造和表征。微型发电机旨在从我们日常生活中的旋转运动中获取动能。多层结构由能量收集单元对组成。每个单元由两部分组成:连接在中心轴上的带铜电极的旋转叶片和固定在外部屏障结构上的固定盘。与之前的双极板结构相比,目前的装置有两个独特的优点:首先,固定盘的两侧都涂有驻极体材料,并且是电晕带电的。有利于使整个器件的输出功率密度最大化。其次,借助微旋转轴承,首次成功实现了多层旋转结构。因此,整体性能提高了几倍,并且可以很容易地实现高输出功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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