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Fatigue-induced evolution of domain structure in ferroelectric lead zirconate titanate ceramics investigated by piezoresponse force microscopy

机译:压电响应力显微镜研究疲劳诱导铁电锆酸钛酸钛陶瓷中畴结构的演化

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摘要

The evolution of the domain structure in lead zirconate titanate ceramics in the course of polarization fatigue is investigated by piezoresponse force microscopy. It is found that fatigue results in a strong modification of the domain structure. The domain patterns initially consisting of mainly 180° domains split into fine ferroelastic domains to relieve the mechanical stresses arising due to the continuous polarization switching. The observed distorted domain walls (or "wavy" domain patterns) are attributed to clamping by defect agglomerates. The biggest concentration of clamped domains is found in grains close to the electrode interface signifying that these are most damaged by fatigue. Furthermore, a preferred polarization orientation is observed near the electrodes. Postannealing of fatigued samples promotes the partial recovery of the initial domain structure. The results indicate the importance of nearby electrode grains in the polarization switching in polycrystalline materials.
机译:通过压电响应力显微镜研究了锆钛酸铅陶瓷在极化疲劳过程中畴结构的演变。发现疲劳导致畴结构的强烈改变。最初由主要由180°磁畴组成的磁畴图案分成细小的铁弹性磁畴,以缓解由于连续极化转换而产生的机械应力。观察到的变形畴壁(或“波浪形”畴图案)归因于缺陷团聚体的夹紧。在靠近电极界面的晶粒中发现了最大的受钳制区域,这表明这些区域最容易受到疲劳破坏。此外,在电极附近观察到优选的极化取向。疲劳样品的后退火促进了初始畴结构的部分恢复。结果表明在多晶材料的极化转换中附近电极晶粒的重要性。

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