Major Accomplishments in Composite Materials and Sandwich Structures

An Anthology of ONR Sponsored Research
Buch | Hardcover
818 Seiten
2009
Springer (Verlag)
978-90-481-3140-2 (ISBN)

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Major Accomplishments in Composite Materials and Sandwich Structures -
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This book collects major research contributions in composite materials and sandwich structures supported by the U.S. Office of Naval Research. It contains over thirty chapters written by experts and serves as a reference and guide for future research.
This book contains a collection of major research contributions over the last decade in the area of composite materials and sandwich structures supported by the Of?ce of Naval Research (ONR) under the direction of Dr. Yapa D. S. Rajapakse. The Solid Mechanics Research Program at ONR supports research in mechanics of high performancematerialsfortheeffectivedesignofdurableandaffordableNavalstr- tures. Such structures operate in severe environments, and are designed to withstand complex multi-axial loading conditions, including highly dynamic loadings. The - fective design of these structures requires an understanding of the deformation and failure characteristics of structural materials, and the ability to predict and control their performance characteristics. The major focus is on mechanics of composite materials and composite sandwich structures. The program deals with understa- ing and modeling the physical processes involved in the response of glass-?ber and carbon-?ber reinforced composite materials and composite sandwich structures to static, cyclic, and dynamic, multi-axial loading conditions, in severe environments (sea water, moisture, temperature extremes, and hydrostatic pressure).
This anthology consists of 30 chapters written by ONR contractors and rec- nized experts in their ?elds and serves as a reference and guide for future research.

Composite Materials and Structures:Mechanical and Failure Behavior.- Accelerated Testing for Long-Term Durability of Various FRP Laminates for Marine Use.- Carbon Fiber—Vinyl Ester Interfacial Adhesion Improvement by the Use of an Epoxy Coating.- A Physically Based Cumulative Damage Formalism.- Delamination of Composite Cylinders.- Composite Materials and Structures:Dynamic Effects.- Modeling of Progressive Damage in High Strain—Rate Deformations of Fiber-Reinforced Composites.- Post-Impact Fatigue Behavior of Woven and Knitted Fabric CFRP Laminates for Marine Use.- Dynamic Interaction of Multiple Damage Mechanisms in Composite Structures.- A Review of Research on Impulsive Loading of Marine Composites.- Sandwich Materials and Structures:Mechanical and Failure Behavior.- Failure Modes of Composite Sandwich Beams.- Localised Effects in Sandwich Structures with Internal Core Junctions:Modelling and Experimental Characterisation of Load Response, Failure and Fatigue.- Damage Tolerance of Naval Sandwich Panels.- Size Effect on Fracture of Composite and Sandwich Structures.- Elasticity Solutions for the Buckling of Thick Composite and Sandwich Cylindrical Shells Under External Pressure.- An Improved Methodology for Measuring the Interfacial Toughness of Sandwich Beams.- Structural Performance of Eco-Core Sandwich Panels.- The Use of Neural Networks to Detect Damage in Sandwich Composites.- On the Mechanical Behavior of Advanced Composite Material Structures.- Application of Acoustic Emission Technology to the Characterization and Damage Monitoring of Advanced Composites.- Sandwich Materials and Structures:Dynamic Effects.- Ballistic Impacts on Composite and Sandwich Structures.- Performance of Novel Composites and Sandwich Structures Under Blast Loading.- Single andMultisite Impact Response of S2-Glass/Epoxy Balsa Wood Core Sandwich Composites.- Real-Time Experimental Investigation on Dynamic Failure of Sandwich Structures and Layered Materials.- Characterization of Fatigue Behavior of Composite Sandwich Structures at Sub-Zero Temperatures.- Impact and Blast Resistance of Sandwich Plates.- Modeling Blast and High-Velocity Impact of Composite Sandwich Panels.- Constituent Materials Including Fiber, Polymer Matrix, and Core Materials.- Effect of Nanoparticle Dispersion on Polymer Matrix and their Fiber Nanocomposites.- Experimental and Analytical Analysis of Mechanical Response and Deformation Mode Selection in Balsa Wood.- Mechanics of PAN Nanofibers.- Characterization of Deformation and Failure Modes of Ordinary and Auxetic Foams at Different Length Scales.- Fracture of Brittle Lattice Materials: A Review.

Erscheint lt. Verlag 5.11.2009
Zusatzinfo XVIII, 818 p.
Verlagsort Dordrecht
Sprache englisch
Maße 155 x 235 mm
Themenwelt Naturwissenschaften Chemie Technische Chemie
Naturwissenschaften Physik / Astronomie Mechanik
Technik Bauwesen
Technik Maschinenbau
ISBN-10 90-481-3140-5 / 9048131405
ISBN-13 978-90-481-3140-2 / 9789048131402
Zustand Neuware
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