Flow-Induced Structure in Polymers: 597 - Rilegato

 
9780841232303: Flow-Induced Structure in Polymers: 597

Sinossi

Examines recent advances in understanding the structures of polymer melts, polymer solutions, block copolymers, liquid crystalline polymers, colloid suspensions, and multiphase systems subjected to flow. Reports on advances in instrumental techniques, characterization, theories, and applications. An overview chapter provides a guide and reference source to related reviews and identifies similarities in flow behavior between various materials science disciplines.

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Contenuti

  • A.I. Nakatani: An Introduction to Flow-Induced Structures in Polymers
  • G. Fuller, J. van Egmond, D. Wirtz, E. Peuvrel-Disdier, E. Wheeler, and H. Takahashi: Enhancement of Concentration Fluctuations in Solutions Subject to External Fields
  • T. Kume and T. Hashimoto: String Phase in Semidilute Polystyrene Solutions Under Steady Shear Flow
  • F. Boué and P. Lindner: Small Angle Neutron Scattering from Sheared Semidilute Solutions: Butterfly Effect
  • A. Emanuele and M.B. Palma-Vittorelli: Structural Evolution and Viscous Dissipation During Spinodal Demixing of a Biopolymeric Solution
  • A.J. McHugh, A. Immaneni, and B.J. Edwards: Flow-Induced Structuring and Conformational Rearrangements in Flexible and Semiflexible Polymer Solutions
  • M. Zisenis, B. Prtzl, and J. Springer: Changes of Macromolecular Chain Conformations Induced by Shear Flow
  • M.L. Fernandez and J.S. Higgins: Effect of Flow on Polymer-Polymer Miscibility
  • T. Izumitani and T. Hashimoto: Effect of Shear Deformation on Spinodal Decomposition
  • Y. Takahashi and I. Noda: Domain Structures and Viscoelastic Properties of Immiscible Polymer Blends Under Shear Flow
  • Z.J. Chen, N.G. Remediakis, M.T. Shaw, and R. A. Weiss: Effects of Flow on the Structure and Phase Behavior of Polymer Blends
  • K. Søndergaard and J. Lyngaae-Jørgensen: Influence of Interface Modification on Coalescence in Polymer Blends
  • A. Dardin, C. Boeffel, H.-W. Spiess, R. Stadler, and E.T. Samulski: Orientation Behavior of Thermoplastic Elastomers Studied by ²H-NMR Spectroscopy
  • P.-Y. Lai: Monte Carlo Simulations of End-Grafted Polymer Chains Under Shear Flow
  • M. Muthukumar: Effect of Shear on Self-Assembling Block Copolymers and Phase-Separating Polymer Blends
  • C.L. Jackson, F.A. Morrison, A.I. Nakatani, J.W. Mays, M. Muthukumar, K.A. Barnes, and C.C. Han: Shear-Induced Changes in the Order-Disorder Transition Temperature and the Morphology of a Triblock Copolymer
  • A.I. Nakatani, D.S. Johnsonbaugh, and C.C. Han: Phase-Separation Kinetics of a Polymer Blend Solution Studied by a Two-Step Shear Quench
  • L.E. Dewalt, K.L. Farkas, C.L. Abel, M.W. Kim, D.G. Peiffer, and H.D. Ou-Yang: Shear-Induced Structure and Dynamics of Tube-Shaped Micelles
  • B. Diao, S. Vijaykumar, and G.C. Berry: The Texture in Shear Flow of Nematic Solutions of a Rodlike Polymer
  • S.A. Patlazhan, J.B. Riti, and P. Navard: Light Scattering from Lyotropic Textured Liquid-Crystalline Polymers Under Shear Flow
  • W. Burghardt, B. Bedford, K. Hongladarom, and M. Mahoney: Comparison of Molecular Orientation and Rheology in Model Lyotropic Liquid-Crystalline Polymers
  • M.D. Dadmun: Shear-Induced Orientation of Liquid-Crystalline Hydroxypropylcellulose in D[2O as Measured by Neutron Scattering
  • W.J. Orts, L. Godbout, R.H. Marchessault, and J.F. Revol: Shear-Induced Alignment of Liquid-Crystalline Suspensions of Cellulose Microfibrils

Product Description

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