Publication | Closed Access
Flexure mode flexoelectric piezoelectric composites
136
Citations
9
References
2009
Year
Materials ScienceStrain GradientEngineeringMechanical PropertiesPiezoelectric NanogeneratorsCeramic MaterialMechanical EngineeringApplied PhysicsFunctional CeramicCeramics MaterialsPiezoelectric MaterialsPiezoelectricityPiezoelectric MaterialPiezoelectric Single CrystalCeramic TechnologyMechanical Resonance
We present a flexure mode composite design to generate steep transverse strain gradient to exploit large flexoelectric coefficient μ1122 of (Ba,Sr)TiO3 (BST) ceramics. Very strong direct piezoelectric effect was observed in composites due to the flexoelectricity. In a single unit composite, sharp low frequency (<300 Hz) mechanical resonance leads to high effective d33>2000 pC/N as the result of enhancement of strain gradient at resonance. Giant nonresonance d33 well beyond piezoelectric single crystal about 4350 pC/N was measured at a temperature around Curie temperature of BST ceramic in a six unit three layer composite.
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