Buch, Englisch, 318 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 510 g
Buch, Englisch, 318 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 510 g
ISBN: 978-0-12-824155-4
Verlag: William Andrew Publishing
Engineered Polymer Nanocomposites for Energy Harvesting Applications looks at materials engineering, characterization and design aspects of mechanical energy harvesting devices for superior performance. Tapping into electrical energy from various mechanical stimuli, such as stress, elongation, tension and vibration has been getting substantial research attention, however, there are many challenges associated with the development energy harvesters with efficient conversion capabilities. This title consolidates a broad spectrum of material engineering and devices design research into one resource and will be an invaluable reference for those working in this field.
Zielgruppe
<p>Academics, researchers, under graduate and post graduate students and scientists primarily working in the field of materials science, applied chemistry, applied physics and nanotechnology</p>
Autoren/Hrsg.
Fachgebiete
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Technische Mechanik | Werkstoffkunde Materialwissenschaft: Polymerwerkstoffe
- Technische Wissenschaften Verfahrenstechnik | Chemieingenieurwesen | Biotechnologie Technologie der Kunststoffe und Polymere
- Technische Wissenschaften Energietechnik | Elektrotechnik Energieumwandlung, Energiespeicherung
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Technische Mechanik | Werkstoffkunde Materialwissenschaft: Elektronik, Optik
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Technische Mechanik | Werkstoffkunde Materialwissenschaft: Biomaterialien, Nanomaterialien, Kohlenstoff
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Technische Mechanik | Werkstoffkunde Materialwissenschaft: Verbundwerkstoffe
Weitere Infos & Material
1. Energy Harvesting - outlook on past and present technologies
2. Fluorinated Ferroelectric Polymers
3. Characterisation Methods
4. Strategies for ferroelectric phase inclusion
5. Ferroelectric Ceramics
6. Magnetic Ceramics
7. Isolation and characterisation of bio-fillers
8. Polymer/ferroelectric filler nanocomposites
9. Polymer/Magnetic filler nanocomposites
10. Hybrid composites with Shape Memory Alloys
11. Designs and Performance Evaluation of energy harvesters