Differential Scanning Calorimetry Polymr

Differential Scanning Calorimetry Polymr

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Description

Differential scanning calorimetry (DSC) has played a vital role in materials research, development, manufacturing and processing - especially of polymers - over the last 10 years. This book is the first to provide an in-depth assessment of the applications of DSC in polymer science, technology and analysis, examining the most significant studies that have taken place in this area. The authors show how DSC can be applied to various fields of polymer science where other methods have been unsuccessful. They discuss the ways in which DSC facilitates quantitative studies of the thermodynamic parameters and kinetics of melting, crystallization, liquid-crystallization, different phase and relaxational transition; structural relaxation, estimation of heat capacity, heat conductivity and degree of crystalinity; and also examines the influence of deformation and irradiation on the structure and internal energy of polymers, permits to study the kinetics of their synthesis, and the transformation and degradation of polymers. The book opens up new possibilities for the prediction of relaxation transition parameters as well as the properties and processes in polymers controlled by segmental dynamics.show more

Product details

  • Paperback | 272 pages
  • 172 x 230 x 20mm | 480.82g
  • Pearson Education (US)
  • Addison Wesley
  • Boston, United States
  • Russian
  • 0132182157
  • 9780132182157

Table of contents

Fundamentals of DSC method and analysis of methodical factors affecting the results of quantitative measurements; main transitions in the disordered structure of flexible-chain polymers; features of relaxational transitions in different types of polymer revealed by DSC data; relaxational transitions in multicomponent and plasticized polymer systems - studies by DSC and possibilities of prediction; phase transitions in polymers and calorimetric determination of their characteristics; study of deformed polymers; irradiated polymers; other applications of DSC for studying and monitoring polymeric materials.show more