Mechanical Design of Piezoelectric Energy Harvesters: Generating Electricity from Human Walking
Autor Qingsong Xu, Lap Mou Tamen Limba Engleză Paperback – 27 oct 2021
This book presents force-amplification compliant mechanism design and force direction-transmission mechanism design. It explores new mechanism design approaches using piezoelectric materials and permanent magnets. Readers can expect to learn how to design new mechanisms to realize multidimensional energy harvesting systems.
- Provides new mechanical designs of piezoelectric energy harvesters for multidimensional force excitation
- Contains both theoretical and experimental results
- Fully supported with real-life examples on design, modeling and implementation of piezoelectric energy harvesting devices
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Specificații
ISBN-13: 9780128233641
ISBN-10: 0128233648
Pagini: 288
Ilustrații: Approx. 100 illustrations (100 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.39 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128233648
Pagini: 288
Ilustrații: Approx. 100 illustrations (100 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.39 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction
2. Energy Harvesting Materials and Circuits
3. Survey on Mechanical Designs of Piezoelectric Energy Harvester
4. Review of Energy Harvesting from Human Walking
5. Design of a New Piezoelectric Energy Harvester Based on Compound Two-Stage Force Amplification Frame
6. Design of a New Piezoelectric Energy Harvesting Handrail with Vibration and Force Excitations
7. Design of a Novel Piezoelectric Energy Harvester Based on Integrated Multi-Stage Force Amplification Frame
8. Design and Testing of a Novel Bidirectional Energy Harvester with Single Piezoelectric Stack
9. Design and Testing of a Novel 2-D Energy Harvester with Single Piezoelectric Stack
10. Design of a Novel 2-D Piezoelectric Energy Harvester with Permanent Magnets and Multi-Stage Force Amplifier
11. Design and Testing of a New Dual-Axial Underfloor Piezoelectric Energy Harvester
12. Design, Fabrication and Testing of a Novel 3-D Energy Harvester
13. Conclusions
2. Energy Harvesting Materials and Circuits
3. Survey on Mechanical Designs of Piezoelectric Energy Harvester
4. Review of Energy Harvesting from Human Walking
5. Design of a New Piezoelectric Energy Harvester Based on Compound Two-Stage Force Amplification Frame
6. Design of a New Piezoelectric Energy Harvesting Handrail with Vibration and Force Excitations
7. Design of a Novel Piezoelectric Energy Harvester Based on Integrated Multi-Stage Force Amplification Frame
8. Design and Testing of a Novel Bidirectional Energy Harvester with Single Piezoelectric Stack
9. Design and Testing of a Novel 2-D Energy Harvester with Single Piezoelectric Stack
10. Design of a Novel 2-D Piezoelectric Energy Harvester with Permanent Magnets and Multi-Stage Force Amplifier
11. Design and Testing of a New Dual-Axial Underfloor Piezoelectric Energy Harvester
12. Design, Fabrication and Testing of a Novel 3-D Energy Harvester
13. Conclusions