双横向换能器能量采集器的磁致伸缩建模与仿真

S. Naifar, S. Bradai, T. Keutel, O. Kanoun
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引用次数: 3

摘要

磁致伸缩换能器用于各种各样的应用,包括快速响应阀执行器,线性泵,旋转电机,声学水下装置和能量收集装置。其性能的优化是基于对磁致伸缩的静态和动态行为的精确建模。本文对采用双侧Terfeonl-D\PZT层压复合材料的磁致伸缩压电振动能量采集器进行了建模和有限元分析。本设计可以充分利用磁体产生的磁场。此外,收割机的体积不会随着双换能器的放置而增加,因为它们被放置在磁铁之间的气隙中。建立了三维模型来研究层合复合材料的响应,并确定了传感器在静力平衡处的最佳初始位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and simulation of magnetostriction in a twin lateral transducers energy harvester
Magnetostrictive transducers are used in a broad variety of applications that include fast response valve actuator, linear pumps, rotary motors, acoustic underwater devices and energy harvesting devices. Optimization of their performance is based on accurate modeling of the static and dynamic behavior of magnetostriction. This paper describes the modelling and the finite element analysis of magnetostriction for a magnetoestrictive and piezoelectric vibration energy harvester employing twin lateral Terfeonl-D\PZT laminate composite. The presented design can make the best use of the magnetic field produced by the magnets. In addition, the volume of the harvester does not increase with the placement of the twin transducers since they are placed in the air gap between the magnets. A three dimensional model is built to investigate the response of the laminate composite and to determine the optimal initial position of the transducers at the static equilibrium.
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