Characterization Techniques for Advanced Polymer Composite Materials

Characterization Techniques for Advanced Polymer Composite Materials

  • Majid Baniassadi
  • Mostafa Baghani
  • Yves Rémond
  • Vadim Silberschmidt
Publisher:ElsevierISBN 13: 9780443403316ISBN 10: 0443403317

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Characterization Techniques for Advanced Polymer Composite Materials is written by Majid Baniassadi and published by Elsevier. It's available with International Standard Book Number or ISBN identification 0443403317 (ISBN 10) and 9780443403316 (ISBN 13).

Characterization Techniques for Advanced Polymer Composite Materials outlines methods for assessing the properties of advanced polymer composite materials, discussing sample preparation, microscopy and scattering techniques, data analysis and interpretation, microstructure identification, constitutive models, and more. It introduces the constituting laws of soft materials and demonstrates how to identify microstructure based on microscopy images. Techniques for measuring the thermal properties, electrical, and thermal characterization of these materials are covered including scanning electron microscopy, transmission electron microscopy, focused ion beam microscopy, as well as scattering techniques such as wide-angle X-ray, small-angle x-ray, and small-angle neutron. Each chapter starts with a brief explanation of the characterization technique followed by practical examples demonstrating methods of interpreting experimental results. - Focuses on the experimental characterization of the microstructure, thermomechanical, and electrical properties of polymer composites and nanocomposites - Discusses sample preparation for characterization, outlining various mixing methods and emphasizing the importance of uniform dispersion and homogeneity of fillers or reinforcements - Provides methods for experimental data analysis and microstructure identification for heterogeneous materials and polymer-based composites - Examines different constitutive models and their application to soft materials - Analyzes the thermal, electrical, mechanical, and microstructural properties of polymer nanocomposites, shape memory polymers, and polymer composites