Heterophase Network Polymers: Synthesis, Characterization, and Properties

, by ;
Heterophase Network Polymers: Synthesis, Characterization, and Properties by Rozenberg; Boris A, 9780415284172
Note: Supplemental materials are not guaranteed with Rental or Used book purchases.
  • ISBN: 9780415284172 | 0415284171
  • Cover: Hardcover
  • Copyright: 6/27/2002

Purchase Options
  • Rent

    (Recommended)

    $142.91
    Term
    Due
    Price
    *This item is part of an exclusive publisher rental program and requires an additional convenience fee. This fee will be reflected in the shopping bag.
  • Buy New

    Usually Ships in 3-5 Business Days

    $182.97
  • eBook

    eTextBook from VitalSource Icon

    Available Instantly

    Online: 180 Days

    Downloadable: 180 Days

    *To support the delivery of the digital material to you, a digital delivery fee of $3.99 will be charged on each digital item.
    $175.56*
This volume explains the theory and experimental investigations in the preparation of heterophase polymer network materials through cure reaction-induced microphase separation (CRIMPS). It describes the synthesis of a new family of block- and graft-copolymers with controlled solubility in epoxies and characterizes CRIMPS processes using novel applications of known methods such as nuclear magnetic resonance, electron spin resonance and photochemistry. The text develops a new method for characterizing the molecular mass distribution (MMD) of linear and network polymers using thermomechanical analysis data, as well as new methods for determining internal stresses and flaw formation during thermoset curing. The CRIMPS theory will be helpful for researchers and engineers designing and improving toughened plastics and other smart heterophase network materials for different applications. The new method for MMD characterization of polymers in bulk will be very useful to quickly analyze a polymer's MMD and to design new polymers. This book will provide a useful reference for graduates, researchers and working professionals in polymer chemistry and physics and materials science.