Fatehi et al., 2019 - Google Patents
Piezoelectric energy harvesting from nonlinear vibrations of functionally graded beams: finite-element approachFatehi et al., 2019
- Document ID
- 11634577316533240969
- Author
- Fatehi P
- Farid M
- Publication year
- Publication venue
- Journal of Engineering Mechanics
External Links
Snippet
In this research, the piezoelectric energy harvesting (PEH) from nonlinear vibrations of a functionally graded beam is presented. The material properties of the harvester (both the substructure and piezoelectric layers) vary as graded in thickness direction to a power law …
- 238000003306 harvesting 0 title abstract description 35
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Fatehi et al. | Piezoelectric energy harvesting from nonlinear vibrations of functionally graded beams: finite-element approach | |
DuToit et al. | Experimental verification of models for microfabricated piezoelectric vibration energy harvesters | |
Chen et al. | Analytical modeling of piezoelectric vibration-induced micro power generator | |
Upadrashta et al. | Trident-shaped multimodal piezoelectric energy harvester | |
Song | Finite-element implementation of piezoelectric energy harvesting system from vibrations of railway bridge | |
Aridogan et al. | Analytical modeling and experimental validation of a structurally integrated piezoelectric energy harvester on a thin plate | |
Wu et al. | Energy harvester synthesis via coupled linear-bistable system with multistable dynamics | |
Bilgen et al. | Analytical and experimental characterization of macro-fiber composite actuated thin clamped-free unimorph benders | |
Salmani et al. | An exact analytical solution to exponentially tapered piezoelectric energy harvester | |
Rosa et al. | Modeling and Analysis of a Piezoelectric Energy Harvester with Varying Cross‐Sectional Area | |
Rhimi et al. | Tunable energy harvesting from ambient vibrations in civil structures | |
Nechibvute et al. | Finite element modeling of a piezoelectric composite beam and comparative performance study of piezoelectric materials for voltage generation | |
Jiang et al. | Electromechanical modeling and experimental analysis of a compression-based piezoelectric vibration energy harvester | |
Mahesh | Porosity effect on the energy harvesting behaviour of functionally graded magneto-electro-elastic/fibre-reinforced composite beam | |
Sunny et al. | Optimal energy harvesting from a membrane attached to a tensegrity structure | |
Danish et al. | Dynamic response of piezoelectrically actuated bistable cross-ply laminates under oscillating impulse voltages | |
Zhang et al. | Piezoelectric energy harvesting from bridge vibrations using different models for moving vehicles | |
Ardito et al. | Advanced model for fast assessment of piezoelectric micro energy harvesters | |
Amini et al. | Energy harvesting from vibrations of a functionally graded beam due to moving loads and moving masses | |
Jemai et al. | Mathematical Modeling of an Active‐Fiber Composite Energy Harvester with Interdigitated Electrodes | |
Fatehi et al. | Piezoelectric energy harvesting from nonlinear dynamics of functionally graded plate under multi-moving loads and masses | |
Özdemir | Circuit topology for piezoelectric transducers in a piezoelectric energy harvester | |
Feng et al. | Frequency‐tunable resonant hybrid vibration energy harvester using a piezoelectric cantilever with electret‐based electrostatic coupling | |
Malaji et al. | Energy harvesting from near periodic structures | |
Huang et al. | Active control of stay cable vibration using a giant magnetostrictive actuator |