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Design and experimental study of rotary-type energy harvester

机译:旋转型能源收割机的设计与实验研究

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A rotary-type energy harvester for the applications having space restrictions has been designed and developed to harvest the energy from rotary motion system. The rotation kinetic energy is converted into electrical energy through a lead zirconate titanate patch, which is strained by magnetic force. Most of the researchers used d(31)mode of the piezoelectric material of such conversion. Some researchers have explored d(33)mode harvester with piezo patch along the circumferential direction. In this article, d(33)mode of harvesting with radial direction piezo patch has been proposed. Mathematical and finite element models are developed to calculate the harvested energy. The results are experimentally verified. The average output power of 14.48 nW is generated corresponding to the magnetic force of 0.3126 N and rotational speed of 2100 r/min. The results from the mathematical and finite element models are observed to be consistent with the experimental results. Such harvester will be useful for the applications having space limitations such as self-power generation in an artillery shell and rotary projectile.
机译:设计和开发了一种用于具有空间限制的应用的旋转型能量收割机以从旋转运动系统收获能量。旋转动能通过通过磁力应变的锆钛酸钛酸酯贴剂转化为电能。大多数研究人员使用了这种转化的压电材料的D(31)模式。一些研究人员沿着圆周方向探索了D(33)模式收割机的压电贴片。在本文中,已经提出了D(33)利用径向压电贴片的收获方式。开发了数学和有限元模型来计算收获的能量。结果是通过实验验证的。对应于0.3126 n的磁力和2100 r / min的转速产生的平均输出功率。观察到数学和有限元模型的结果与实验结果一致。这种收割机对于具有空间限制的应用是有用的,例如在炮壳和旋转射弹中的自发电。

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