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- W4320341468 abstract "In this paper, from the view of active manipulation of electronic devices, to better reveal an external stimulus field-dependent mechanical tuning methodology and mechanism on the resonance characteristic and working performance, a comprehensive analytical model and theoretical solution of flexoelectric energy nanoharvester, driven via a time-harmonic magnetic field and thermal field, have been developed and established, in which, the coupled extensional and flexural vibration, flexoelectricity and surface effect as well as nonlinear magnetic-mechanical-thermo-electric coupling characteristic, are all included. After effective material constants of giant magnetostrictive material are exactly obtained, some key performance indexes (including strain gradient, output current, magneto-electric (ME) coupling coefficient, output power density, resonant frequency) of the harvesters are systematically investigated and discussed, which not only can be controled actively and tuned intelligently under applied external magnetic fields, pre-stresses and thermal fields stimuli, but also can also be dramatically enhanced and improved effectively through both flexoelectricity and surface effect. The theoretical model and solution obtained in this study are more general, which are suitable for the macroscopic and microscopic, linear and nonlinear mechanical analysises. Meanwhile, this work also provides a theoretical basis for more extensive investigations related to widely-used high frequency vibrations with shear deformation in device applications." @default.
- W4320341468 created "2023-02-13" @default.
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- W4320341468 date "2023-03-01" @default.
- W4320341468 modified "2023-10-06" @default.
- W4320341468 title "Nonlinear magnetic-mechanical-thermo-electric coupling characteristic analysis on the coupled extensional and flexural vibration of flexoelectric energy nanoharvester with surface effect" @default.
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- W4320341468 doi "https://doi.org/10.1016/j.compstruct.2023.116687" @default.
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