
Micro and Nanomechanics, Volume 5
Proceedings of the 2017 Annual Conference on Experimental and Applied Mechanics
Springer (Verlag)
Erschienen am 18. August 2018
Buch
Softcover
VII, 81 Seiten
978-3-319-87546-0 (ISBN)
Beschreibung
Micro-and Nanomechanics, Volume 5 of the Proceedings of the 2017 SEM Annual Conference & Exposition on Experimental and Applied Mechanics, the fifth volume of nine from the Conference, brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on a wide range of areas, including:
MEMS & Energy Harvesting1D & 2D Materials/FabricationMicro/Nano Microscopy TechniquesNanomechanicsFlexible & Stretchable ElectronicsInterfaces & Adhesion
MEMS & Energy Harvesting1D & 2D Materials/FabricationMicro/Nano Microscopy TechniquesNanomechanicsFlexible & Stretchable ElectronicsInterfaces & Adhesion
Weitere Details
Reihe
Auflage
Softcover reprint of the original 1st ed. 2018
Sprache
Englisch
Verlagsort
Cham
Schweiz
Verlagsgruppe
Springer International Publishing
Zielgruppe
Für Beruf und Forschung
Illustrationen
35 s/w Abbildungen, 43 farbige Abbildungen
VII, 81 p. 78 illus., 43 illus. in color.
Maße
Höhe: 279 mm
Breite: 210 mm
Dicke: 6 mm
Gewicht
248 gr
ISBN-13
978-3-319-87546-0 (9783319875460)
DOI
10.1007/978-3-319-63405-0
Schweitzer Klassifikation
Weitere Ausgaben
Andere Ausgaben

LaVern Starman | Jenny Hay
Micro and Nanomechanics, Volume 5
Proceedings of the 2017 Annual Conference on Experimental and Applied Mechanics
Buch
10/2017
Springer
160,49 €
Versand in 10-15 Tagen
Inhalt
Chap1. Nanomechanics Instabilities and TeraHertz Vibrations: From Geochemical Evolution to Fracto-Emission Seismic Precursors.- Chap2. Femtosecond Laser Machining of Micro-tensile Specimens for High Throughput Mechanical Testing.- Chap3. PVDF-TrFE Electroactive Polymer Based Micro-Electro-Mechanical Systems (MEMs) Structures.- Chap4. Novel Image Correlation Based Techniques for Mechanical Analysis of MEMS.- Chap5. Interphase Mechanics in Fatigued Carbon Fiber Composite Materials.- Chap6. Energy Balance during Elettrolysis and Cavitation Experiments.- Chap7. Characterizing Traction-Separation Relations of TSV/SI Interfaces by Nanonindentation.- Chap8. Size Effects in Single-crystal Metallic Micro- and Nanocubes.- Chap9. An Experimental Study to Guide AFM - Based TBN of Nanochannels.- Chap10. Hybrid Nanomaterials for Flexible Electronics Interconnects.- Chap11. Characterization of a MEMS Electrostatic Microgripper for Micromanipulation and Sensing.- Chap12. Dynamic Characterization of aHigh-resolution MEMS Force Sensor for Middle-ear Mechanics.