Chalivendra / Berke / Beese | Mechanics of Composite, Hybrid and Multifunctional Materials, Fracture, Fatigue, Failure and Damage Evolution, Volume 3 | Buch | 978-3-030-86740-9 | sack.de

Buch, Englisch, 115 Seiten, Format (B × H): 215 mm x 285 mm, Gewicht: 576 g

Reihe: Conference Proceedings of the Society for Experimental Mechanics Series

Chalivendra / Berke / Beese

Mechanics of Composite, Hybrid and Multifunctional Materials, Fracture, Fatigue, Failure and Damage Evolution, Volume 3

Proceedings of the 2021 Annual Conference on Experimental and Applied Mechanics
1. Auflage 2022
ISBN: 978-3-030-86740-9
Verlag: Springer International Publishing

Proceedings of the 2021 Annual Conference on Experimental and Applied Mechanics

Buch, Englisch, 115 Seiten, Format (B × H): 215 mm x 285 mm, Gewicht: 576 g

Reihe: Conference Proceedings of the Society for Experimental Mechanics Series

ISBN: 978-3-030-86740-9
Verlag: Springer International Publishing


Mechanics of Composite, Hybrid, and Multifunctional Materials, Fracture, Fatigue, Failure and Damage Evolution, Volume 3 of the Proceedings of the 2021 SEM Annual Conference & Exposition on Experimental and Applied Mechanics, the third volume of four 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:

Recycled Constituent Composites

Damage Detection

Advanced Imaging of Composites

Multifunctional Materials

Composite Interfaces

Tunable Composites

Novel Experimental Methods

Extreme Environments

Interfacial Fracture

Integration of Models & Experiments

Mechanics of Energy & Energetic Materials

Integration of Models & Experiments

In Situ Techniques for Fatigue & Fracture

Microscale & Microstructural Effects on Mechanical Behavior

Chalivendra / Berke / Beese Mechanics of Composite, Hybrid and Multifunctional Materials, Fracture, Fatigue, Failure and Damage Evolution, Volume 3 jetzt bestellen!

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Weitere Infos & Material


Chapter 1. Effects of Water Saturation and Low Temperature Coupling on the Mechanical Behavior Mechanical Behavior of Carbon and E-Glass Epoxy Laminates.- Chapter 2. Initiation and Propagation Fracture Toughness of AA7475-T7651 under Different Loading Conditions.- Chapter 3. Flow Stress and Fracture Toughness Behavior of AA5083 under Quasi-static Loading.- Chapter 4. Development of Carbon-glass Fiber Reinforced Hybrid Composites: Applications in Offshore Wind Turbine Blades.- Chapter 5. Effect of the Graphene Nano Platelets (GnP) on the Mechanical Properties in Recycled PP Based Hybrid Composites.- Chapter 6. Static and Dynamic Behaviour of Recycled AA7075 Based Composites reinforced with ZrO2 - gamma-Al203 Fibre and SiC.- Chapter 7. Recycled “Al431+A1050” based Composites Reinforced with “TiC” Ceramic Powders for Aeronautical Applications.- Chapter 8. Experimental and Finite Element Study of Recycled Aluminium (AA7075) Matrix Composites Reinforced of TiC/MoS2/-Al2O3 Fibre/Nb2Al.- Chapter 9. Tailored Behaviour of Scrap Copper Matrix Composites Reinforced with "Zn-Ni-Al" Low Cost Shape Memory Structures.- Chapter 10. Mechanical Properties of Recycled Rubber modified Epoxy Resin based Composites for Aircraft Auxiliary Structures.- Chapter 11. Manufacturing of Thin Sheet “Ni-Ti” Based Composites Reinforced with Nb2Al/TiB2 through hot-forged Bonding: Sandwich Structures.- Chapter 12. Design of Nb-Aluminium (Nb2Al) Intermetallics based Composites An Experimental and Numerical Approach for Toughening Mechanism.- Chapter 13. Numerical Modeling of Recycled Rubber Based Composites Reinforced with Glass Fibers at High Strain Rates.- Chapter 14. Piezoelectric Actuators as Control Surfaces for Morphing Vehicle.- Chapter 15. Alternative Concretes: Study of Concrete Performance with Addition of Copper Tailings Reinforced and Steel Fiber.- Chapter 16. Cyclical Instrumented Indentation Testing for Fatigue Characterization of Metals.- Chapter 17. Toughening Mechanism of Recycled Rubber Based Composites Reinforced with Glass Fibers + Alumna Fibers for Military Applications.- Chapter 18. Sensitivity Analysis of a Concrete Structure Subjected to Cyclic Loading Using a Polynomial Chaos Expansion Method.


Dr. Vijaya Chalivendra is with the University of Massachusetts, Dartmouth, MA, USA; Dr. Allison Beese is with the Pennsylvania State University, State College, PA, USA; Dr. Ryan Berke is with Utah State University, Logan, UT, USA. 



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