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Electric and magnetic polarization saturations for a thermally loaded penny-shaped crack in a magneto-electro-thermo-elastic medium

机译:电磁电热 - 热弹性介质中的热负载便士形裂缝的电气和磁极化饱和偏振

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摘要

This paper is devoted to investigating the thermal-induced electric and magnetic polarization saturations (PS) at the tip of a penny-shaped crack embedded in an infinite space of magneto-electro-thermo-elastic medium. In view of the symmetry with respect to the cracked plane, this crack problem is formulated by a mixed boundary value problem. By virtue of the solution to the Abel type integral equation, the governing equations corresponding to the present problem are analytically solved and the generalized crack surface displacement and field intensity factors are obtained in closed-forms. Applying the hypothesis of the electric and magnetic PS model to the analytical results, the sizes of the electric and magnetic yielding zones are determined. Numerical calculations are carried out to reveal the influences of the thermal load and the electric and magnetic yielding strengths on the results, and to show the distributions of the electric and magnetic potentials on the crack surfaces. It is found that the sizes of electric and magnetic yielding zones are mainly dependent on the electric and magnetic yielding strengths, respectively. Since the multi-ferroic media are widely used in various complex thermal environments, the present work could serve as a reference for the designs of various magneto-electric composite structures.
机译:本文致专用于在嵌入在磁热弹性介质的无限空间中的便士形裂缝尖端的热感应电极和磁极化饱和饱和饱和饱和饱和状态。鉴于相对于裂化平面的对称性,该裂缝问题由混合边值问题配制。借助于对Abel型积分方程的解决方案,对应于本问题的控制方程被分析解决,并且在闭合形式获得广义裂缝表面位移和场强因子。将电磁和磁性PS模型的假设应用于分析结果,确定了电气和磁性收益区的尺寸。进行数值计算,以揭示热负荷和电磁力屈服强度对结果的影响,并示出了裂缝表面上的电磁电势的分布。结果发现,电气和磁性收益区的尺寸主要取决于电力和磁性屈服强度。由于多铁介质广泛用于各种复杂的热环境中,所以本工作可以作为各种磁电复合结构的设计的参考。

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