具有初始变形的电磁弹性半空间接触问题

M. O. Levi
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引用次数: 5

摘要

在本文中,我们考虑使用虚拟吸收法来解决初始变形下电磁弹性半空间表面上的失重印记的振动接触问题。采用基于准静态近似的线性化运动方程,描述了具有初始力学应变的层状半空间的振动。解析构造了层状半电磁弹性空间的各种边值问题的格林函数,描述了电弹性层与磁弹性半空间边界上的各种磁性条件。假设介质的振动是根据谐波规律来解决和进行的。计算结果表明静流体变形对电磁弹性介质动态电容的影响。此外,还研究了磁性各种边界条件对动态电容的影响。所有的计算都以无量纲形式呈现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contact Problem for Electro-Magneto-Elastic Half-Space with Initial Deformations
In this paper, we consider the use of the fictitious absorption method to solve the contact problem of oscillations of a weightless stamp on the surface of an electro-magneto-elastic half-space under initial deformations. Oscillations of a layered half-space with initial mechanical strains is described by using linearized motion equations based on the quasi-static approximation for a prestressed electro-magneto-elastic medium. The Green function of a layered half electro–magneto–elastic-space for various boundary value problems describing various magnetic conditions on the boundary between the electroelastic layer and the magnetoelastic half-space was analytically constructed. Assuming that vibrations of the medium to be settled and proceed according to a harmonic law. The calculated results show the influence of hydrostatic deformation on the dynamic capacitance of an electro–magneto–elastic medium. In addition, the effect of magnetic various boundary conditions on dynamic capacitance is studied. All calculations is present in a dimensionless form.
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