...
首页> 外文期刊>Crystals >A Magnetic-Dependent Vibration Energy Harvester Based on the Tunable Point Defect in 2D Magneto-Elastic Phononic Crystals
【24h】

A Magnetic-Dependent Vibration Energy Harvester Based on the Tunable Point Defect in 2D Magneto-Elastic Phononic Crystals

机译:基于2D磁弹性声子晶体中的可调谐点缺陷的磁性振动能量收割机

获取原文
   

获取外文期刊封面封底 >>

       

摘要

In this work, an innovative vibration energy harvester is designed by using the point defect effect of two-dimensional (2D) magneto-elastic phononic crystals (PCs) and the piezoelectric effect of piezoelectric material. A point defect is formed by removing the central Tenfenol-D rod to confine and enhance vibration energy into a spot, after which the vibration energy is electromechanically converted into electrical energy by attaching a piezoelectric patch into the area of the point defect. Numerical analysis of the point defect can be carried out by the finite element method in combination with the supercell technique. A 3D Zheng-Liu (Z-L) model which accurately describes the magneto-mechanical coupling constitutive behavior of magnetostrictive material is adopted to obtain variable band structures by applied magnetic field and pre-stress along the z direction. The piezoelectric material is utilized to predict the output voltage and power based on the capacity to convert vibration energy into electrical energy. For the proposed tunable vibration energy harvesting system, numerical results illuminate that band gaps (BGs) and defect bands of the in-plane mixed wave modes ( XY modes) can be adjusted to a great extent by applied magnetic field and pre-stress, and thus a much larger range of vibration frequency and more broad-distributed energy can be obtained. The defect bands in the anti-plane wave mode ( Z mode), however, have a slight change with applied magnetic field, which leads to a certain frequency range of energy harvesting. These results can provide guidance for the intelligent control of vibration insulation and the active design of continuous power supply for low power devices in engineering.
机译:在这项工作中,通过使用二维(2D)磁弹性声晶晶体(PC)的点缺陷效果和压电材料的压电效果来设计创新的振动能量收割机。通过去除中央肾上腺素-D杆来限制并增强振动能量来形成点缺陷,之后通过将压电贴片连接到点缺陷的区域中,振动能量被鼓动到电能。点缺陷的数值分析可以通过有限元方法与超级电池技术结合进行。采用精确描述磁致伸缩材料的磁机械耦合组成型行为的3D正刘(Z-L)模型来获得通过施加的磁场获得可变带结构,沿Z方向预应力。压电材料基于将振动能量转换成电能的容量来预测输出电压和功率。对于所提出的可调谐振动能量收集系统,数值结果照亮该带间隙(BGS)和面内混合波动模式(XY模式)的缺陷带可以在很大程度上通过施加的磁场和预应力进行调整因此,可以获得更大范围的振动频率和更广泛的能量。然而,反平面波模式(Z模式)中的缺陷带具有施加的磁场的略微变化,这导致了一定的能量收集频率范围。这些结果可以为振动控制的智能控制和工程中低功耗器件的连续电源的主动设计提供指导。

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