Advanced Polymeric Materials: Structure Property Relationships
Featuring contributions from experts at some of the world's leading academic and industrial institutions, Advanced Polymeric Materials: Structure Property Relationships brings into book form a wealth of information previously available primarily only within computer programs. In a welcome narrative treatment, it provides comprehensive coverage of polymeric materials, including polymer composites as well as the more commonly addressed polymer blends. Along with discussion on a variety of applications, topics include general aggregate properties, design considerations, characterization and enhancement of physical and mechanical properties, processing and manufacturing, and components failure.
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Chapter 2 InProcess Monitoring for Control of ClosedMold Techniques for the Manufacture of Thermosetting Matrix Composites
Chapter 3 Manufacture and Performance of ZPinned Composites
Chapter 4 Modeling Concepts for the Spherulitic Growth in Polymers and Composites
Chapter 5 Rheological Measurements and Modeling of Noncolloidal Particulate Suspensions
Chapter 6 Properties and Optical Behavior of PEVinyl Copolymer IPNLike Networks
Chapter 7 Cure and Rubber Toughening of Vinyl Ester Resins
Chapter 8 Properties of Dendrimers and Hyerbranched Polymers and Their Blends
Chapter 10 PolymerClay Nanocomposites
Chapter 11 Review of Polymer Composities with Carbon Nanotubes
Chapter 12 Performance Synergism in PolymerBased Hybrid Materials
Chapter 13 Synthetic Biomedical Polymers for Tissue Engineering and Drug Delivery
Chapter 14 An Introduction to Absorbable and Degradable Systems and Their Biomedical Application
Chapter 9 Gas Barrier Properties of Polymeric Materials
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Appl applications behavior biodegradable blends buckling carbon nanotubes cavitation Chem chemical clay composite materials computed copolymer crack cross-linking crystalline crystallization cure decrease degradation delamination dendrimers dielectric dispersion drug delivery effect epoxy resin Equation exfoliated fracture function Genetic Algorithms glass transition glass transition temperature glycolic acid growth hybrid hyperbranched polymers increase intercalated kinetics lactic acid laminates layer linear liquid load Macromolecules matrix mechanical properties melt method modulus molding molecular weight molecules monitoring monomer montmorillonite morphology multiwalled nanocomposites nucleation nylon optical optimization phase Phys plastic ply angle poly(anhydrides polyamide polymer polymerization ratio reaction reinforced rheological Rheology rubber particles scaffold sensor shear shown in Figure silicate solution solvent spherulites stiffness strength stress structure studies styrene surface suspension synthesis techniques temperature tensile thermal thermoplastic tissue engineering toughening toughness vinyl ester vinyl ester resin viscosity yield Z-Fiber Z-pins
Page 545 - Polyanhydrides as drug delivery systems, in: Biodegradable Polymers as Drug Delivery Systems (M.