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Constitutive relations of ferroelectric ceramics with electric fatigue effects

机译:铁电陶瓷的本构关系与电疲劳效应

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Recent experiments have demonstrated that cyclic electric loading may cause polarization switching fatigue of ferroelectric ceramics. We formulate a novel constitutive model for ferroelectric ceramics with electric fatigue induced by the two most important physical mechanisms, i.e. accumulation of point defects (or microcracking damage) and domain wall pinning. The local domain pinning effect is considered to be associated with the nonhomogeneous spatial distribution of positive and negative space charges. The proposed model can elucidate various experimental phenomena reported in the literature. It is found that the electric property of space charges has an essential effect on the symmetry of strain hysteresis loops while point defects influence the change of remanent polarization and coercive field.
机译:最近的实验表明,周期性的电负载可能会导致铁电陶瓷的极化转换疲劳。我们建立了一种铁电陶瓷的新型本构模型,该模型具有两种最重要的物理机制(即点缺陷(或微裂纹破坏)的累积和畴壁钉扎)引起的电疲劳。局部域钉扎效应被认为与正负空间电荷的不均匀空间分布有关。所提出的模型可以阐明文献中报道的各种实验现象。发现空间电荷的电学性质对应变磁滞回线的对称性具有至关重要的影响,而点缺陷影响剩余极化和矫顽场的变化。

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