A. R / Thomas | Compatibilization of Polymer Blends | Buch | 978-0-12-816006-0 | sack.de

Buch, Englisch, 640 Seiten, Format (B × H): 229 mm x 154 mm, Gewicht: 1004 g

A. R / Thomas

Compatibilization of Polymer Blends

Micro and Nano Scale Phase Morphologies, Interphase Characterization, and Properties

Buch, Englisch, 640 Seiten, Format (B × H): 229 mm x 154 mm, Gewicht: 1004 g

ISBN: 978-0-12-816006-0
Verlag: Elsevier Science Publishing Co Inc


Compatibilization of Polymer Blends: Micro and Nano Scale Phase Morphologies, Interphase Characterization and Properties offers a comprehensive approach to the use of compatibilizers in polymer blends, examining both fundamental and advanced knowledge in the field. The book begins by introducing polymer blends, describing thermodynamics, miscibility, and phase separation, and explaining the main concepts of compatibilization. Other sections cover theoretical approaches for nearly compatible blends, incompatible blends, nanofillers, physical compatibilization, reactive compatibilization, morphological and structural characterization, and physico-mechanical characterization. Finally, key application areas are covered, including biomedical applications, packaging and automobile engineering.

While this book will be a highly valuable reference source for academics, researchers and postgraduate students interested in polymer blends, it will also be ideal for anyone involved in the fields of polymer science, polymer chemistry, polymer physics, materials science, scientists, R&D professionals, and engineers in involved in the development or engineering of polymer products.
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Zielgruppe


Academia: Researchers, lecturers and postgraduate students involved with polymer blends, or in the fields of polymer science, polymer chemistry, polymer physics and materials science;Industry: Scientists, R&D professionals and engineers involved in the development or engineering of polymer products

Weitere Infos & Material


1. Introduction: polymer blends, thermodynamics, miscibility, phase separation and compatibilization2. Concepts and classification of compatibilization process 3. Compatibilization of polymer blends by the addition of graft copolymers4. Compatibilization of polymer blends by the addition of random copolymers5. Compatibilization of polymer blends by micro and nanofillers6. Reactive compatibilization of polymer blends by coupling agents and interchange catalysts7. Compatibilization of polymer blends by Janus Particles8. Compatibilization of polymer blends by shear pulverization9. Micro and nanoscale morphology characterization by microscopy10. Scattering studies of compatibilized polymer blends11. Interface analysis of compatibilized polymer blends12. Spectroscopic analysis of compatibilized polymer blends13. Crystallization studies of compatibilized polymer blends14. Viscoelastic characterization of polymer blends15. Rheological Characterization of polymer blends16. Thermal studies of compatibilized polymer blends17. Application of compatibilized polymer blends in biomedical field18. Application of compatibilized polymer blends in packaging19. Application of compatibilized polymer blends in automobile engineering


A. R, Ajitha
Dr. Ajitha A. Ramachandran specializes in polymer blends, nanocomposites, and hybrid nanomaterials. Her research includes EMI shielding studies of thermoplastic/ polyester/ CNT blend nanocomposites, focusing on the development of advanced materials with tailored properties for specific applications.

Thomas, Sabu
Prof. Sabu Thomas is a Professor of Polymer Science and Engineering and the Director of the School of Energy Materials at Mahatma Gandhi University, India. Additionally, he is the Chairman of the Trivandrum Engineering Science & Technology Research Park (TrEST Research Park) in Thiruvananthapuram, India. He is the founder director of the International and Inter-university Centre for Nanoscience and Nanotechnology at Mahatma Gandhi University and the former Vice-Chancellor of the same institution.

Prof. Thomas is internationally recognized for his contributions to polymer science and engineering, with his research interests encompassing polymer nanocomposites, elastomers, polymer blends, interpenetrating polymer networks, polymer membranes, green composites, nanocomposites, nanomedicine, and green nanotechnology. His groundbreaking inventions in polymer nanocomposites, polymer blends, green bionanotechnology, and nano-biomedical sciences have significantly advanced the development of new materials for the automotive, space, housing, and biomedical fields. Dr. Thomas has been conferred with Honoris Causa (DSc) by the University of South Brittany, France.


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