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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Fracture analysis of ferroelectric single crystals: Domain switching near crack tip and electric field induced crack propagation
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Fracture analysis of ferroelectric single crystals: Domain switching near crack tip and electric field induced crack propagation

机译:铁电单晶的断裂分析:裂纹尖端附近的畴转换和电场引起的裂纹扩展

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摘要

A theoretical analysis is developed for cracked ferroelectric single crystals, focusing on domain switching near the crack tip and field induced crack propagation under a pure electric loading. Domain switching near the crack tip is analyzed first, with the local field concentration determined from the linear piezoelectric fracture analysis, and the resulting domain switching zone established from energetic analysis and compatibility consideration. The crack propagation under a pure electric loading is then analyzed using energy release rate based on field induced domain switching near crack tip. It is found that a negative electric field opposite to the original poling direction would induce a stripe domain switching zone near crack tip, which in turn provides driving force for the electric field induced crack propagation. On the other hand, a positive electric field parallel to the original poling direction induces nearly no domain switching near crack tip, and results in no crack propagation. Good agreements with experiments and phase field simulations are observed.
机译:对裂纹铁电单晶进行了理论分析,重点是裂纹尖端附近的畴转换和纯电载荷下场致裂纹的扩展。首先分析裂纹尖端附近的区域转换,并根据线性压电断裂分析确定局部场浓度,然后根据能量分析和兼容性考虑确定最终的区域转换区。然后基于在裂纹尖端附近的场感应域切换,使用能量释放速率分析纯电载荷下的裂纹扩展。发现与原始极化方向相反的负电场将在裂纹尖端附近引起条状区域切换区,从而为电场引起的裂纹扩展提供驱动力。另一方面,平行于原始极化方向的正电场几乎不会在裂纹尖端附近引起畴切换,并且不会导致裂纹扩展。观察到与实验和相场模拟的良好协议。

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