This book explores the role of various surface phenomena in the structural and mechanical behaviour of amorphous and semicrystalline polymers, providing a useful framework for the development of new and innovative polymer-based materials. The text discusses the healing of interfacial surfaces, investigates strain softening and the phenomena taking place upon deformation of polymers in active liquid media, covers the Rehbinder effect, describes the properties of polymers in environmental or solvent crazing, details the applied aspects of surface phenomena in polymers and polymer systems, and more.…mehr
This book explores the role of various surface phenomena in the structural and mechanical behaviour of amorphous and semicrystalline polymers, providing a useful framework for the development of new and innovative polymer-based materials. The text discusses the healing of interfacial surfaces, investigates strain softening and the phenomena taking place upon deformation of polymers in active liquid media, covers the Rehbinder effect, describes the properties of polymers in environmental or solvent crazing, details the applied aspects of surface phenomena in polymers and polymer systems, and more.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
A. L. Volynskii is an honorary worker at Lomonosov Moscow State University, Russia, and the Correspondent Member of the Russian Academy of Sciences, Moscow. N. F. Bakeev is a professor at Lomonosov Moscow State University, Russia, and the Full Member of the Russian Academy of Sciences, Moscow.
Inhaltsangabe
Development of the interfacial surface in deformation of polymers. Healing of the interfacial surface in polymer systems. Special features of the structure and properties of surface layers and thin (nanometric) films of glassy polymers. Role of surface phenomena in shear yielding of glassy polymers. Role of surface phenomena in strain softening of glassy and crystalline polymers. Role of surface phenomena in deformation of polymers in active liquid media. The structure and properties of crazed polymers. Multiphase nanodispersed systems based on crazed polymers. Instability and self-organisation of polymer surfaces. Evaluation of the structural and mechanical properties of nanometric surface layers. Natural systems constructed on the basis of the 'a rigid coating on a soft substratum' principle. Perspectives for the practical application of surface phenomena in solid polymers.
Development of the interfacial surface in deformation of polymers. Healing of the interfacial surface in polymer systems. Special features of the structure and properties of surface layers and thin (nanometric) films of glassy polymers. Role of surface phenomena in shear yielding of glassy polymers. Role of surface phenomena in strain softening of glassy and crystalline polymers. Role of surface phenomena in deformation of polymers in active liquid media. The structure and properties of crazed polymers. Multiphase nanodispersed systems based on crazed polymers. Instability and self-organisation of polymer surfaces. Evaluation of the structural and mechanical properties of nanometric surface layers. Natural systems constructed on the basis of the 'a rigid coating on a soft substratum' principle. Perspectives for the practical application of surface phenomena in solid polymers.
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