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Energy harvesting with the piezoelectric material integrated shoe

机译:压电材料一体式滑靴收集能量

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摘要

In our times, the importance of energy efficiency is known by anyone. Besides, it is possible to reclaim the energy consumed by means of the developed technology. In this study, it is aimed to reclaim the energy transferred to the ground while people are walking in their daily lives by using piezoelectric materials, which convert mechanical energy into electrical energy. Having designed a sole to serve this goal, different piezoelectric materials are placed into the sole. Its behaviors under human weight are observed using computer software. For this reason, parametric analyses were carried out using 50, 60, 70, 80, and 90 kg, PZT-5H and PZT-8 piezoelectric ceramics and frames made of steel and aluminum materials as holding bodies of piezoelectric ceramics as human bodies. As a result of the analysis, a system of PZT-5H piezoelectric ceramic with a steel frame integrated into a human shoe of a weight of 90 kg used, showing that 0.4% of the applied force can be harvested to 1.43 mW of electrical power. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在我们这个时代,能源效率的重要性是众所周知的。此外,有可能通过开发的技术来回收所消耗的能量。在这项研究中,其目的是利用压电材料来回收人们在日常生活中行走时转移到地面的能量,该材料将机械能转换为电能。为实现这一目标设计了鞋底,将不同的压电材料放入鞋底。使用计算机软件观察其在人类体重下的行为。因此,使用50、60、70、80和90 kg,PZT-5H和PZT-8压电陶瓷以及由钢和铝材料制成的框架作为压电陶瓷的支撑体来进行参数分析。分析的结果是,使用了一个PZT-5H压电陶瓷系统,该系统将钢制框架集成到重量为90 kg的人鞋中,表明可以将0.4%的外加力收集到1.43 mW的电能。 (C)2018 Elsevier Ltd.保留所有权利。

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