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Two-scale micromechanics-based probabilistic modeling of domain switching in ferroelectric ceramics
Authors:W Tang  DN Fang  JY Li
Affiliation:aDepartment of Engineering Mechanics, Tsinghua University, Beijing 100084, China;bDepartment of Mechanical Engineering, University of Washington, Seattle, WA 98195-2600, USA
Abstract:A two-scale micromechanics model is developed in this paper to analyze domain switching in ferroelectric ceramics, using a probabilistic domain switching criterion based on energetic analysis. The microstructure of ferroelectric ceramics at two distinct length scales, domains and grains, has been carefully analyzed. The interaction at domain level is accounted for by energy minimization theory, while the fluctuation at grain level is analyzed using ellipsoidal two-point correlation function. The model has been implemented by Monte Carlo method, and applied to simulate the electric poling and mechanical depoling of Pb(ZrxTi1-x)O3 (PZT) ceramics across morphotropic phase boundary (MPB). The drastically different switching characteristics of PZT ceramics across MPB has been captured, and good agreement with experiments has been observed. The effects of the transformation strains and spontaneous polarizations are highlighted, confirming the proposition of Li et al. 2005. Domain switching in polycrystalline ferroelectric ceramics. Nature Materials 4, 776–781] that the strain compatibility plays a dominant role in domain switching in ferroelectric ceramics.
Keywords:Ferroelectric ceramics  Domain switching  Micromechanics  Monte Carlo simulation
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