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首页> 外文期刊>International Journal of Fracture >On contact zone models for an electrically limited permeable interface crack in a piezoelectric bimaterial
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On contact zone models for an electrically limited permeable interface crack in a piezoelectric bimaterial

机译:压电双材料中电受限的可渗透界面裂纹的接触区模型

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摘要

An electrically limited permeable crack with a frictionless contact zone at the right crack tip between two semi-infinite piezoelectric spaces under the action of a remote electromechanical loading is considered. Attention is focused on the influence induced from the permittivity of the medium inside the crack gap on the contact zone length and the fracture mechanical parameters. Assuming the electric displacement constant inside the open region of the crack, the problem is reduced to a combined Dirichlet-Riemann and Hilbert boundary value problems which have been solved exactly. Stress and electric displacement intensity factors as well as the crack tip energy release rate are found in a clear analytical form. Furthermore, transcendental equations for the determination of the real contact zone length have been obtained for a general case and for a small contact zone length in an especially simple form. The dependencies of the mentioned values on the intensities of the electromechanical loading are presented in tables and associated diagrams.
机译:考虑了在远程机电负载的作用下,在两个半无限压电空间之间的右裂纹尖端处具有无摩擦接触区的电限制的可渗透裂纹。注意力集中在裂纹间隙内部介质的介电常数对接触区长度和断裂力学参数的影响上。假定裂纹的开放区域内的电位移常数为常数,则该问题可以简化为精确解决的Dirichlet-Riemann和Hilbert边值问题的组合。应力和电位移强度因子以及裂纹尖端的能量释放速率以清晰的分析形式发现。此外,对于一般情况和对于小的接触区长度,已经以特别简单的形式获得了用于确定实际接触区长度的超越方程。表格和相关图表中显示了所提到的值与机电负载强度的相关性。

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