Publication | Closed Access
Subcoercive Cyclic Electrical Loading of Lead Zirconate Titanate Ceramics II: Time‐Resolved X‐Ray Diffraction
76
Citations
50
References
2009
Year
EngineeringElectrical PropertiesElectric FieldPiezoelectric MaterialMaterials ScienceElectrical EngineeringDomain Wall DynamicsCeramic MaterialMacroscopic Piezoelectric PropertiesPiezoelectric MaterialsPiezoelectricityMicrostructureX‐ray DiffractionApplied PhysicsStructural ChangesCeramics MaterialsFerroelectric MaterialsEnergy CeramicEngineering Ceramic
Structural changes such as non‐180° domain wall motion and lattice strains in Pb(Zr,Ti)O 3 ceramics are measured during the application of subcoercive cyclic electric fields using time‐resolved high‐energy X‐ray diffraction with a stroboscopic data collection technique. The contributions to the electric‐field‐induced strains from non‐180° domain wall motion and lattice distortions are determined as a function of material composition and type of dopant. For the different compositions studied, the largest strains due to non‐180° domain wall motion are measured for La‐doped tetragonal ceramics with a composition close to the morphotropic phase boundary. It is further observed that strain contributions from both non‐180° domain wall motion and lattice distortions can be nonlinear with respect to the applied electric field. The correlation between the electric‐field‐induced structural changes and the macroscopic piezoelectric properties is discussed.
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