Description

Book Synopsis

the present book will be of great value for both newcomers to the field and mature active researchers by serving as a coherent and timely introduction to some of the modern approaches, ideas, results, emerging understanding, and many open questions in this fascinating field of polymer glasses, supercooled liquids, and thin films
Kenneth S. Schweizer, Morris Professor of Materials Science & Engineering, University of Illinois at Urbana-Champaign (from the Foreword)

This book provides a timely and comprehensive overview of molecular level insights into polymer glasses in confined geometries and under deformation. Polymer glasses have become ubiquitous to our daily life, from the polycarbonate eyeglass lenses on the end of our nose to large acrylic glass panes holding water in aquarium tanks, with advantages over glass in that they are lightweight and easy to manufacture, while remaining transparent and rigid. The contents include an introduction to the field, as well as stat

Trade Review

"the present book will be of great value for both newcomers to the field and mature active researchers by serving as a coherent and timely introduction to some of the modern approaches, ideas, results, emerging understanding, and many open questions in this fascinating field of polymer glasses, supercooled liquids, and thin films"
–Kenneth S. Schweizer, Morris Professor of Materials Science & Engineering, University of Illinois at Urbana-Champaign (from the Foreword)


"the present book will be of great value for both newcomers to the field and mature active researchers by serving as a coherent and timely introduction to some of the modern approaches, ideas, results, emerging understanding, and many open questions in this fascinating field of polymer glasses, supercooled liquids, and thin films"
–Kenneth S. Schweizer, Morris Professor of Materials Science & Engineering, University of Illinois at Urbana-Champaign (from the Foreword)



Table of Contents

What Makes Polymer Glasses Unique? Fundamental of Polymers and Glasses. Structural Recovery and Physical Aging of Polymeric Glasses. Glass Transition and Relaxation Behavior of Supercooled Polymer Melts: An Introduction to Modeling Approaches by Molecular Dynamics Simulations. Thermo-Mechanical Signatures of Polymeric Glasses. Polymer Glasses in Confinement. Correlating Glass Transition and Physical Aging in Polymer Films. Mechanical and Viscoelastic Properties of Polymer Thin Films and Surfaces. Glassy and Aging Dynamics in Polymer Films Investigated by Dielectric Relaxation Spectroscopy. Cooperative Motion as an Organizing Principle for Relaxation in Supported Thin Polymer Films. Mechanical Properties of Polymers and Nano-Composites Close to the Glass Transition. Polymer Glasses Under Deformation. A Molecular Perspective on the Yield and Flow of Polymer Glasses: The Role of Enhanced Segmental Dynamics during Active Deformation. Local Relaxation, Aging, and Memory of Polymer Glasses at Rest and Under Stress. Experiments-Inspired Molecular Modeling of Yielding and Failure of Polymer Glasses Under Large Deformation. Modeling Strain Hardening in Polymer Glasses Using Molecular Simulations. A Comparison of Constitutive Descriptions of the Thermo-Mechanical Behavior of Polymeric Glasses.

Polymer Glasses

    Product form

    £999.99

    Includes FREE delivery

    A Hardback by Connie B. Roth

    Out of stock

      Trusted by thousands of customers. See 2,385+ Customer Reviews

      View other formats and editions of Polymer Glasses by Connie B. Roth

      Publisher: Taylor & Francis Inc
      Publication Date: Publication Date: 21/12/2016
      ISBN13: 9781498711876, 978-1498711876
      ISBN10: 1498711871

      Description

      Book Synopsis

      the present book will be of great value for both newcomers to the field and mature active researchers by serving as a coherent and timely introduction to some of the modern approaches, ideas, results, emerging understanding, and many open questions in this fascinating field of polymer glasses, supercooled liquids, and thin films
      Kenneth S. Schweizer, Morris Professor of Materials Science & Engineering, University of Illinois at Urbana-Champaign (from the Foreword)

      This book provides a timely and comprehensive overview of molecular level insights into polymer glasses in confined geometries and under deformation. Polymer glasses have become ubiquitous to our daily life, from the polycarbonate eyeglass lenses on the end of our nose to large acrylic glass panes holding water in aquarium tanks, with advantages over glass in that they are lightweight and easy to manufacture, while remaining transparent and rigid. The contents include an introduction to the field, as well as stat

      Trade Review

      "the present book will be of great value for both newcomers to the field and mature active researchers by serving as a coherent and timely introduction to some of the modern approaches, ideas, results, emerging understanding, and many open questions in this fascinating field of polymer glasses, supercooled liquids, and thin films"
      –Kenneth S. Schweizer, Morris Professor of Materials Science & Engineering, University of Illinois at Urbana-Champaign (from the Foreword)


      "the present book will be of great value for both newcomers to the field and mature active researchers by serving as a coherent and timely introduction to some of the modern approaches, ideas, results, emerging understanding, and many open questions in this fascinating field of polymer glasses, supercooled liquids, and thin films"
      –Kenneth S. Schweizer, Morris Professor of Materials Science & Engineering, University of Illinois at Urbana-Champaign (from the Foreword)



      Table of Contents

      What Makes Polymer Glasses Unique? Fundamental of Polymers and Glasses. Structural Recovery and Physical Aging of Polymeric Glasses. Glass Transition and Relaxation Behavior of Supercooled Polymer Melts: An Introduction to Modeling Approaches by Molecular Dynamics Simulations. Thermo-Mechanical Signatures of Polymeric Glasses. Polymer Glasses in Confinement. Correlating Glass Transition and Physical Aging in Polymer Films. Mechanical and Viscoelastic Properties of Polymer Thin Films and Surfaces. Glassy and Aging Dynamics in Polymer Films Investigated by Dielectric Relaxation Spectroscopy. Cooperative Motion as an Organizing Principle for Relaxation in Supported Thin Polymer Films. Mechanical Properties of Polymers and Nano-Composites Close to the Glass Transition. Polymer Glasses Under Deformation. A Molecular Perspective on the Yield and Flow of Polymer Glasses: The Role of Enhanced Segmental Dynamics during Active Deformation. Local Relaxation, Aging, and Memory of Polymer Glasses at Rest and Under Stress. Experiments-Inspired Molecular Modeling of Yielding and Failure of Polymer Glasses Under Large Deformation. Modeling Strain Hardening in Polymer Glasses Using Molecular Simulations. A Comparison of Constitutive Descriptions of the Thermo-Mechanical Behavior of Polymeric Glasses.

      Recently viewed products

      © 2026 Book Curl

        • American Express
        • Apple Pay
        • Diners Club
        • Discover
        • Google Pay
        • Maestro
        • Mastercard
        • PayPal
        • Shop Pay
        • Union Pay
        • Visa

        Login

        Forgot your password?

        Don't have an account yet?
        Create account