Applied Mathematics and Mechanics (English Edition) ›› 2008, Vol. 29 ›› Issue (8): 1023-1032 .doi: https://doi.org/10.1007/s10483-008-0806-x

• Articles • 上一篇    下一篇

磁弹性耦合效应引起的铁磁直杆磁场中振动频率的改变

王省哲   

  1. 兰州大学 西部灾害与环境力学教育部重点实验室;
    兰州大学 土木工程与力学学院,兰州 730000
  • 收稿日期:2007-12-20 修回日期:2008-06-30 出版日期:2008-08-18 发布日期:2008-08-18
  • 通讯作者: 王省哲

Changes in the natural frequency of a ferromagnetic rod in a magnetic field due to magnetoelastic interaction

WANG Xing-zhe   

  1. Key Laboratory of Mechanics on Western Disasters and Environment, Lanzhou University, Lanzhou 730000, P. R. China
  • Received:2007-12-20 Revised:2008-06-30 Online:2008-08-18 Published:2008-08-18
  • Contact: WANG Xing-zhe

摘要: 基于磁弹性广义变分原理和Hamilton原理,对处于外加磁场中的磁铁磁体,建立了磁弹性动力学理论模型,分别通过关于铁磁杆耦合作用的磁体力和磁面力.采用摄动技术和Galerkin方法,将所建立的磁弹性理论模型应用于外加磁场中铁磁直杆的振动分析.结果表明,由于磁弹性耦合效应,外加磁场将对铁磁杆的振动频率产生影响;当铁磁杆的振动位移沿着磁场方向时,其频率减小并出现磁弹性屈曲失稳;当铁磁杆的振动位移垂直于磁场方向时,其频率将会增大.理论模型能够很好地解释已有实验观测的振动频率改变现象.

关键词: 铁磁杆, 磁弹性相互作用, 广义变分原理, 振动频率, 摄动方法

Abstract: Based on the magnetoelastic generalized variational principle and Hamilton's principle, a dynamic theoretical model characterizing the magnetoelastic interaction of a soft ferromagnetic medium in an applied magnetic field is developed in this paper. From the variational manipulation of magnetic scale potential and elastic displacement, all the fundamental equations for the magnetic field and mechanical deformation, as well as the magnetic body force and magnetic traction for describing magnetoelastic interaction are derived. The theoretical model is applied to a ferromagnetic rod vibrating in an applied magnetic field using a perturbation technique and the Galerkin method. The results show that the magnetic field will change the natural frequencies of the ferromagnetic rod by causing a decrease with the bending motion along the applied magnetic field where the magnetoelastic buckling will take place, and by causing an increase when the bending motion of the rod is perpendicular to the field. The prediction by the mode presented in this paper qualitatively agrees with the natural frequency changes of the ferromagnetic rod observed in the experiment.

Key words: generalized variational principle, magnetoelastic interaction, vibration frequency, perturbation method, ferromagnetic rod

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