Dynamic Response and Failure of Composite Materials and Structures presents an overview of recent developments in a specialized area of research with original contributions from the authors who have been asked to outline needs for further investigations in their chosen topic area. The result is a presentation of the current state-of-the art in very specialized research areas that cannot be found elsewhere in the literature. For example, Massabò presents a newly developed theory for laminated composite plates that accounts for imperfect bonding between layers with new solutions for problems…mehr
Dynamic Response and Failure of Composite Materials and Structures presents an overview of recent developments in a specialized area of research with original contributions from the authors who have been asked to outline needs for further investigations in their chosen topic area. The result is a presentation of the current state-of-the art in very specialized research areas that cannot be found elsewhere in the literature.
For example, Massabò presents a newly developed theory for laminated composite plates that accounts for imperfect bonding between layers with new solutions for problems involving thermal effects. This theory is new and computationally-efficient, and the author describes how it fits in the broader context of composite plate theory. Abrate discusses the design of composite marine propellers and presents a detailed derivation of the equations of motion of a rotating blade, including centrifugal effects and the effects of pre-twisting and other geometric parameters.
This book is a major reference resource for academic and industrial researchers and designers working in aerospace, automotives, and the marine engineering industry. Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Serge Abrate is Professor at the Southern Illinois University, USA. He has been Guest editor of several special issues in various journals: Composite Science and Technology, Composites Structures, Composites Part A, the International Journal of Impact Engineering, Procedia Engineering 2014, and Meccanica and is a member of the editorial boards for the Int. J. of Mechanical Sciences, Composite Structures, Heliyon, Composite Materials, Curved and Layered Structures. He is author of one book published by Cambridge University Press (Impact on Composite Structures, August 2005, ISBN: 9780521018326), editor and co-author of two books published by Springer (Impact Engineering of Composite Structures, 2011, ISBN 978-3-7091-0523-8; Dynamic Failure of Composite and Sandwich Structures, vol. 192., 2013) and Author of several book chapters.
Inhaltsangabe
1. Introduction
Part 1 The Dynamic behavior of Composite Materials and Structures 2. Numerical methods to predict the nonlinear transient response of laminated composite structures under dynamic loads 3. Thermoelastic solutions for laminates and sandwiches with interlayer delaminations and imperfect thermal contact 4. Dynamic behavior of composite marine propeller blades 5. Numerical simulations and experimental experiences of impact on composite structures
Part 2 Low Velocity Impact on Composite Structures 6. On the modelling of low velocity impact Phenomena on Composite structures 7. Semi-continuous modeling of low velocity impacts on woven fabric laminates 8. Impact of composite plates in contact with water 9. Impact behaviour and destructive and non-destructive damage investigations on composite laminates at room and low temperature loading conditions 10. Impact response of advanced composite structures reinforced by carbon nanoparticles
Part 3 Blast Loading and Crash Absorbing Composite Materials and Structures 11. Implosion of Composite Cylinders due to Underwater Impulsive Loads 12. CFRP versus GFRP sandwich materials blast damage/response 13. Progressive bearing failure of composites for crash energy absorption 14. Thin-walled truncated conical structures under axial collapse: analysis of crushing parameters 15. Lightweight solutions for vehicle frontal bumper: crash design and manufacturing issues 16. Pressure reconstruction during water impact through particle image velocimetry: methodology overview and applications to lightweight structures
Part 1 The Dynamic behavior of Composite Materials and Structures 2. Numerical methods to predict the nonlinear transient response of laminated composite structures under dynamic loads 3. Thermoelastic solutions for laminates and sandwiches with interlayer delaminations and imperfect thermal contact 4. Dynamic behavior of composite marine propeller blades 5. Numerical simulations and experimental experiences of impact on composite structures
Part 2 Low Velocity Impact on Composite Structures 6. On the modelling of low velocity impact Phenomena on Composite structures 7. Semi-continuous modeling of low velocity impacts on woven fabric laminates 8. Impact of composite plates in contact with water 9. Impact behaviour and destructive and non-destructive damage investigations on composite laminates at room and low temperature loading conditions 10. Impact response of advanced composite structures reinforced by carbon nanoparticles
Part 3 Blast Loading and Crash Absorbing Composite Materials and Structures 11. Implosion of Composite Cylinders due to Underwater Impulsive Loads 12. CFRP versus GFRP sandwich materials blast damage/response 13. Progressive bearing failure of composites for crash energy absorption 14. Thin-walled truncated conical structures under axial collapse: analysis of crushing parameters 15. Lightweight solutions for vehicle frontal bumper: crash design and manufacturing issues 16. Pressure reconstruction during water impact through particle image velocimetry: methodology overview and applications to lightweight structures
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