...
首页> 外文期刊>Journal of magnetism and magnetic materials >Experimental investigation on a Fe-Ga close yoke vibrational harvester by matching magnetic and mechanical biases
【24h】

Experimental investigation on a Fe-Ga close yoke vibrational harvester by matching magnetic and mechanical biases

机译:磁偏置和机械偏置匹配的铁-镓密轭振动收割机的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

The output power generated by a vibrational magnetostrictive energy harvester depends on several parameters, some of them linked to the mechanical source, as vibration amplitude and frequency, others related to design quantities, like mechanical preload, magnetic bias, coil turns and load impedance. Complex models have been developed in literature to reproduce the behavior of these devices. However, for output variables such as power and voltage, one moves in a space of many variables and it is not trivial to reconstruct an overall behavior of the device.The aim of this paper is to provide a wide picture concerning the device behavior investigating experimentally the output power and voltage as a function of the mechanical and especially magnetic bias, varying the amplitude and frequency of the driving vibration. A galfenol rod (Fe81Ga19) sample inserted in a three-legged magnetizer is utilized to vary the magnetic bias and to provide the flux closure to the sample, while a dynamic test machine provides both the mechanical bias and the driving vibration at different frequencies up to 100 Hz. The paper analysis has highlighted that the output power and voltage depend on the magnetic bias according to an exponentially modified Gaussian distribution. Keeping constant the other parameters and varying the mechanical bias, a family of modified Gaussian distributions is obtained. Moreover, fixing the electric load, the amplitude and frequency of the vibration, the couple of values "magnetic bias - mechanical preload" corresponding to the maximum output power of the device depicts a linear behavior.The results here obtained point out that it is possible to simplify the design of magnetostrictive energy harvesters and to obtain high output power even with permanent magnets providing a relatively small coercive field. The results have been confirmed by using two yokes equipped with permanent magnets on the external columns. The maximum output average power obtained with permanent magnets has been 796 mW equal to 6.5 mW/cm(3) with a sinusoidal vibration amplitude of 40 MPa at 100 Hz.
机译:振动磁致伸缩能量采集器产生的输出功率取决于几个参数,其中一些与机械源相关,例如振幅和频率,其他参数与设计量有关,例如机械预紧力,磁偏置,线圈匝数和负载阻抗。文献中已经开发了复杂的模型来重现这些设备的行为。然而,对于诸如功率和电压之类的输出变量而言,一个变量会在许多变量的空间中移动,并且重建设备的整体性能并非易事。本文旨在为实验研究设备性能提供一个广阔的前景。输出功率和电压是机械偏置(尤其是磁偏置)的函数,从而改变了驱动振动的幅度和频率。插入三足式充磁机中的加芬洛尔棒(Fe81Ga19)样品可用于改变磁偏置并为样品提供磁通封闭,而动态测试仪可同时提供不同频率下的机械偏置和驱动振动,直至100赫兹论文分析强调,输出功率和电压取决于呈指数修改的高斯分布的磁偏置。保持其他参数不变并改变机械偏置,可以得到一族修正的高斯分布。此外,固定电负载,振动的幅度和频率,与设备的最大输出功率相对应的一对值“磁偏置-机械预负载”描绘了线性行为。此处获得的结果指出,它即使使用永久磁铁提供相对较小的矫顽场,也可以简化磁致伸缩能量收集器的设计并获得高输出功率。通过在外部柱上使用两个配有永磁体的磁轭来确认结果。永久磁铁获得的最大输出平均功率为796 mW,等于6.5 mW / cm(3),在100 Hz时的正弦振动幅度为40 MPa。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号