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首页> 外文期刊>International Journal of Solids and Structures >Electric and magnetic polarization saturation and breakdown models for penny shaped cracks in 3D magnetoelectroelastic media
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Electric and magnetic polarization saturation and breakdown models for penny shaped cracks in 3D magnetoelectroelastic media

机译:3D磁电弹性介质中细小形状裂纹的电磁极化饱和和击穿模型

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摘要

Two nonlinear fracture models, i.e., the electric and magnetic polarization saturation (EMPS) and electric and magnetic breakdown (EMBD) models for penny shaped cracks in three-dimensional magnetoelectroelastic media are studied via the extended displacement discontinuity integral equation method. In the EMPS model, the electric displacement and magnetic induction are constant respectively in the planar electric yielding zone and magnetic yielding zone on the original crack plane, whilst in the EMBD model, the electric and magnetic strengths are constant respectively in their planar yielding zones. Under the electrically and magnetically impermeable conditions and uniformly applied mechanical-electric-magnetic loadings on the faces of the penny shaped crack, analytical solutions are derived for the sizes of electric and magnetic yielding zones and the field intensity factors. It is demonstrated that the fracture behaviors can be predicted equivalently by both EMPS and EMBD models even though they are built on two different physical grounds.
机译:通过扩展位移不连续积分方程方法,研究了三维磁电弹性介质中细小裂纹的两个非线性断裂模型,即电和磁极化饱和度(EMPS)和电和磁击穿(EMBD)模型。在EMPS模型中,在原始裂纹平面上的平面电屈服区和磁屈服区中的电位移和磁感应分别恒定,而在EMBD模型中,在其平面屈服区中的电强度和磁强度分别是恒定的。在电和磁不可渗透的条件下,在便士形裂纹的表面上均匀施加机械电磁载荷,得出了关于电磁屈服区的大小和场强因子的解析解。结果表明,即使基于两个不同的物理基础,EMPS和EMBD模型也可以等效地预测断裂行为。

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