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Rheo-physics of multiphase polymer systems : characterization by rheo-optical techniques

Author: K Søndergaard; J Lyngaae-Jørgensen
Publisher: Lancaster, Pa. : Technomic Pub. Co., ©1995.
Edition/Format:   Print book : EnglishView all editions and formats
Summary:

Emphasizes the rheo-optical techniques. This book gives an introduction to rheo-physics, including fundamentals of theories, and a representative selection of applications of rheo-optical techniques  Read more...

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Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: K Søndergaard; J Lyngaae-Jørgensen
ISBN: 1566761565 9781566761567
OCLC Number: 33088853
Description: xxviii, 568 pages : illustrations ; 23 cm
Contents: Preface, Abbreviations, Nomenclature I.General PrinciplesIntroduction to Rheo-Optics Introduction - Techniques - Summary Fundamentals of Optical Rheometry The Maxwell Equations - Polarization and the Jones and Mueller Calculus - Total Intensity Light Scattering - Spectroscopic Techniques - Design of Optical Instruments - Design of Scattering Experiments Theories of Small-Angle Light, X-Ray, and Neutron Scattering Review of Scattering Phenomena - Survey of Scattering Approximations - Discussions of Scattering Theories, Their Limitations, and Applicability - Multiple Scattering - Particle Size Distribution - Characterization of Orientation Techniques and Instrumentation Introduction - Basic Principles of Instruments and Experiments - Experimental Considerations and Data Treatment II. Structure FormationFlow-Induced Structure Formation in Polymer Solutions Introduction - Flow-Induced Structure Formation in Flexible Chain Systems - Flow-Induced Structuring in Semi-Rigid and Liquid-Crystalline Systems - Theoretical Interpretations - Conclusions - Appendix Flow-Induced Crystallization Introduction and Background - Quantitative Considerations - FIC from Solution - FIC in Melts - FIC in Melt Spinning - Status of Theories in FIC Rheo-Optical and Rheo-X-Ray Investigations of Liquid Crystalline Polymers Introduction - Liquid Crystalline Phases and Liquid Crystalline Polymers - Rheology of Nematic Polymers - Rheo-Optics and Rheo-X-Rays in Steady-State Shear - Transient Shear Experiments - Conclusion III. Phase TransitionsFlow-Induced Dissolution/Demixing in Polymer Systems-A Predictive Scheme Introduction - Experimental Studies - Theory of Flowing Polymer-Containing Liquids - Results of Theoretical Calculations and Comparison with Experiments - Conclusion and Outlook Flow-Induced Phase Changes in Polymer Blends Role of Phase Transitions in Processing-Morphology Relationships - Overview on Experimental Results - Theoretical Approaches - Influence on Phase Diagrams - Conclusions Phase Transitions of Two-Phase Systems in Shear Flow Introduction - Flow-Induced Melting in Polymers - Phase Behavior of Diblock Copolymers - Phase Transition in Polymer Blends: Homogenization and Decomposition - Molecular Interpretation of Phase Transitions - Concluding Remarks IV. Morphology DevelopmentShear Flow-Induced Structural Changes in Polymer Blends and Alloys General Introduction - Techniques for Morphology Monitoring - Fundamentals of Micro-Rheology - Transient and Steady-State Behavior of Polymer Blend Morphology - Appendix In situ Polymer Blend Characterization by Light-Scattering Techniques Introduction - Particle Size Evaluation - Orientation Analysis - ConclusionGlossary, Index21 Tables, 227 Figures
Responsibility: K. Søndergaard, J. Lyngaae-Jørgensen.
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"The book covers the field of rheo-optics applied to polymers very well and presents a complete discussion of the fundamentals, methodology, and application to polymers. The discussion on multiphase Read more...

 
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