Polymer Composites: From Nano- to Macro-ScaleKlaus Friedrich, Stoyko Fakirov, Zhong Zhang Springer Science & Business Media, 2005 M12 6 - 368 páginas The use of polymer composites in various engineering applications has become state of the art. This multi-author volume provides a useful summary of updated knowledge on polymer composites in general, practically integrating experimental studies, theoretical analyses and computational modeling at different scales, i. e. , from nano- to macroscale. Detailed consideration is given to four major areas: structure and properties of polymer nanocomposites, characterization and modeling, processing and application of macrocomposites, and mechanical performance of macrocomposites. The idea to organize this volume arose from a very impressive workshop - The First International Workshop on Polymers and Composites at IVW Kaiserslautern: Invited Humboldt-Fellows and Distinguished Scientists, which was held on May 22-24,2003 at the University of Kaiserslautern, Germany. The contributing authors were invited to incorporate updated knowledge and developments into their individual chapters within a year after the workshop, which finally led to these excellent contributions. The success of this workshop was mainly sponsored by the German Alexander von Humboldt Foundation through a Sofia Kovalevskaja Award Program, financed by the Federal Ministry for Education and Research within the "Investment in the Future Program" of the German Government. In 2001, the Humboldt Foundation launched this new award program in order to offer outstanding young researchers throughout the world an opportunity to establish their own work-groups and to develop innovative research concepts virtually in Germany. One of the editors, Z. |
Contenido
| 3 | |
Application of NonLayered Nanoparticles | 25 |
Reinforcement of Thermosetting Polymers | 45 |
Polyimides Reinforced by a SolGel Derived | 63 |
Layered SilicateRubber Nanocomposites | 77 |
Property Improvements of an Epoxy Resin | 91 |
MicroScratch Testing and Finite Element | 109 |
Determination of the Interface Strength | 132 |
Processing and Application | 187 |
Manufacturing of Tailored Reinforcement | 215 |
Deconsolidation and Reconsolidation | 233 |
Long FiberReinforced Thermoplastic | 255 |
Deformation Mechanisms | 264 |
Impact Damage in Composite Laminates | 289 |
Discontinuous Basalt FiberReinforced | 309 |
Accelerated Testing Methodology | 329 |
Manufacturing and Characterization | 149 |
After Processing | 157 |
Tribological Characteristics of Micro | 168 |
Contributing Authors 343 | 342 |
List of Acknowledgements | 357 |
Otras ediciones - Ver todas
Polymer Composites: From Nano- to Macro-Scale Klaus Friedrich,Stoyko Fakirov,Zhong Zhang Vista previa limitada - 2005 |
Polymer Composites: From Nano- to Macro-Scale Klaus Friedrich,Stoyko Fakirov,Zhong Zhang Sin vista previa disponible - 2005 |
Polymer Composites: From Nano- to Macro-Scale Klaus Friedrich,Stoyko Fakirov,Zhong Zhang Sin vista previa disponible - 2010 |
Términos y frases comunes
adhesion agglomerates applications basalt fiber behavior blends carbon fiber carbon nanotubes compatibilizer Compos Composite Materials curve deformation delamination dispersion effect elastic energy release rate epoxy matrix epoxy resin experimental fatigue strength fiber-reinforced filament filler content finite element fracture Friedrich glass grafting hybrid composites impact improved increase injection molding intercalation interface Kaiserslautern knitted fabric laminate layered silicates load M. Q. Zhang M. Z. Rong manufacturing matrix mechanical properties melt micrograph modulus nanocomposites nanoparticles needle orientation PAAM parameters particles PET/PP/C plastic polyamide polymer composites polymer matrix polymeric polypropylene preform pressure Privalko produced PTFE ratio reinforced rubber samples seam shown in Figure silicate simulation SiO2 sol-gel specimen stitching strain structure surface Technol Technology temperature tensile tests thermoplastic thermoplastic composites thermosetting thread tension towpregs tribological type debonding University University of Kaiserslautern wear rate wear resistance yarn Young's modulus
