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中文核心期刊

地磁环境下结构变形引起的扰动磁场

Perturbed magnetic fields generated by deformation of structures in earth magnetic field

  • 摘要: 基于磁弹性相互作用的线性化理论,针对地磁环境特点,忽略磁场对结构位移的影响而仅考虑位移对磁场的耦合作用,通过将位移梯度引入变形后界面外法线矢量方法,给出了变形引起的扰动磁场计算的定解场方程和界面衔接条件,并计算了符拉芒问题的变形扰动磁场. 结果表明,变形扰动磁场完全取决于位移梯度在界面外法向上的投影;扰动场强与外力成正比;空气中扰动磁场的法向强度和切向强度分布特征明显不同,法向强度在力作用点对称分布,并且在力作用点处存在奇点;切向强度则呈反对称分布,在力作用点处发生突变.

     

    Abstract: Development of magnetism based non-destructive test (NDT) technologiesrequires quantitative relations between deformation, stress,damage or fracture of structures and their induced magnetic field which canbe measured as indicators to assess integrity of the structures. Based onlinearized magnetoelastic theory, the perturbed magnetic fieldsinduced by mechanical stress and deformation in steel or otherferromagnetic structures working in the environment of the Earth magneticfield, are investigated theoretically in this paper.Governing equations and boundary conditions to determine the perturbedfields are derived. The effect of mechanicaldeformation on the magnetic fields is taken into account by couplingstructural displacement into continity conditions of the perturbed magneticfield on the boundary of the structure. When the applied magnetic field isweak, such as the Earth's magnetic field, the effect of magnetic fields onstructural deformation can be neglected. This greatly simplifies thecoupling equations of magnetomechanical interactions. It shows that thenormal projection of displacement gradient on the structure boundary plays adominating role in the perturbed magnetic fields.As an example, the perturbed field of a half-plane magnetized structurecaused by a point force is calculated by the Fourier transform method. Thecalculated magnetic intensity component normal to the boundary of thestructure assumes a symmetric distribution about the point where theforces is acted andreaches its maximum at that point while the component tangentto the boundary is asymmetric and inverses its direction sharply at thatpoint. The magnetic flux density of the perturbed fields isproportional to the magnitude of the applied force. These features provide apossible way for NDT technologies.

     

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