The research of stiffness characteristics of active elements of harvester

Artur Kazickij, V. Bučinskas, E. Šutinys
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引用次数: 1

Abstract

This paper is dedicated to one part of research of human mechanical energy harvester. Harvesters produce electrical energy from human's kinetic energy. Harvesting energy from human body is particularly useful for military portable electronic equipment, life supporting implantable medical devices (IMD) and consumer electronic devices. As a basis of energy transformation piezoelectric crystal was used. Human body creates vibrations of very low frequency, but piezoelectric crystal has natural frequency of hundreds of hertz. This research is intended to adjust mechanical parameters of this harvester and define additional mechanical system parameters which will allow whole harvester became dynamically sensitive to human body vibrations. In this paper there were defined stiffness of real test sample of piezoelectric harvester part and defined characteristics of reduced moments of inertia for dynamical and further mathematical models. After obtaining these values, verification of experimental and theoretical results are presented. Experimental research was performed on specially created test rig using prepared test piece. Theoretical calculations were performed using Solidworks simulation software. Finally, results were compared and conclusions are drawn.
收割机主动元件刚度特性研究
本文是对人体机械式能量采集器的一部分研究。收割机从人的动能中产生电能。从人体中获取能量对于军用便携式电子设备、维持生命的植入式医疗设备(IMD)和消费电子设备尤其有用。利用压电晶体作为能量转换的基础。人体产生的振动频率很低,但压电晶体的固有频率为数百赫兹。本研究旨在调整该收割机的机械参数,并确定附加的机械系统参数,使整个收割机对人体振动具有动态敏感性。本文定义了压电采集器零件实际试验样品的刚度,并定义了动力模型和进一步数学模型的转动惯量缩减特性。得到这些数值后,对实验结果和理论结果进行了验证。利用制备好的试件,在专门搭建的试验台上进行了试验研究。采用Solidworks仿真软件进行理论计算。最后对结果进行比较,得出结论。
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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