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Interplay between Fracture and Domain Switching of Ferroelectrics

机译:铁电体的断裂与域转换之间的相互作用

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摘要

Applications of above-coercive electric fields lead to domain switching of a large or global scale. Large scale switching model is proposed to deal with load-induced domains witching in experiment. Both a discussion of crack initiation via the stress intensity factor and a discussion of crack path stability via T-stress are presented. The theoretical predictions and the experimental data roughly coincide for crack initiation, propagation and stability phenomena. Attention is also extended to consider the effect of non-uniform ferro-elastic domain switching in the vicinity of a crack. The domain switching zone is divided into a saturated inner core and an active surrounding annulus. Toughening for ferroelectrics with different poling states is estimated via Reuss type approximation. Solutions obtained according to spherical and cylindrical inclusions cover the range of experimental data.
机译:矫顽电场的应用导致大规模或全球范围的域切换。提出了大规模切换模型来处理实验中的负载诱导域切换。既讨论了通过应力强度因子引起的裂纹萌生,也讨论了通过T应力实现裂纹路径稳定性的讨论。对于裂纹萌生,扩展和稳定现象,理论预测和实验数据大致吻合。还扩展了注意力,以考虑裂纹附近非均匀铁磁畴转换的影响。磁畴转换区分为饱和内核和有源环带。通过Reuss类型近似估计具有不同极化状态的铁电体的增韧。根据球形和圆柱形夹杂物获得的溶液涵盖了实验数据的范围。

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