The Statistical Nature of Strength and Lifetime in Polymer Films and Fibers

The Statistical Nature of Strength and Lifetime in Polymer Films and Fibers
Title The Statistical Nature of Strength and Lifetime in Polymer Films and Fibers PDF eBook
Author Bronya Tsoi
Publisher CRC Press
Pages 525
Release 2004-03-01
Genre Technology & Engineering
ISBN 9047412265

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This monograph is an updated and extended edition of Strength and Fracture of Polymer Films, which was published in Russian in 1999. It presents the results of long-term theoretical and experimental studies of brittle and quasi-brittle fracture of solid polymers. The principal results of a comprehensive and detailed investigation of the statistical

Structure of the Polymer Amorphous State

Structure of the Polymer Amorphous State
Title Structure of the Polymer Amorphous State PDF eBook
Author Kozlov
Publisher CRC Press
Pages 478
Release 2004-02-01
Genre Science
ISBN 9047412257

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The basic problem of polymer physics is obtaining a ‘structure-propertiesa correlations for their future application for practical purposes. However, these cannot be obtained without the development of a quantitative model of the polymer structure.This problem has been actively investigated during the last 45 years.

Elementorganic Monomers: Technology, Properties, Applications

Elementorganic Monomers: Technology, Properties, Applications
Title Elementorganic Monomers: Technology, Properties, Applications PDF eBook
Author Khananashvili
Publisher CRC Press
Pages 508
Release 2006-06-09
Genre Science
ISBN 9047410351

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New fields of science and technology call for new materials with valuable performance characteristics. Long-term resistance to such temperatures can be found only in polymers with chains made up of thermostable fragments. Particularly interesting in this respect are elementorganic polymers with inorganic and organo-inorganic molecular chains. Eleme

The Concept of Micellar-Sponge Nanophases in Chemical Physics of Polymers

The Concept of Micellar-Sponge Nanophases in Chemical Physics of Polymers
Title The Concept of Micellar-Sponge Nanophases in Chemical Physics of Polymers PDF eBook
Author Yuri Arsenovich Mikheev
Publisher CRC Press
Pages 465
Release 2004-04-01
Genre Technology & Engineering
ISBN 9067644021

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The monograph is intended for elucidation of the novel trend in chemical physics regarding the polymer non-crystalline phase. It stresses the physical phenomena affecting the kinetics and mechanism of chemical reactions proceeding in the non-crystalline polymer matrix (NCPM). NCPM is depicted in terms of a supramolecular (carcass-micellar) model. The model is thought to reflect heterophase packing of polymeric chains, which co-operate as a molecular-chain sponge. The NCPM model presented is proved for adequate description of principal structure-physical phenomena to elaborate the scheme of structural-kinetic modeling of chemical reactions in bulky polymers. Structure-physical phenomena elucidated in the monograph are: - peculiarities of polymer plasticization and polymer blending with liquids; - structural and thermodynamic aspects of sorption of low molecular species; - properties of ESR (spin) probes and optical (molecular) probes; - features of water absorbed by polymers; - mechanical and thermal effects generated by the molecular-chain sponge; - supramolecular aspects of NCPM chemical physics. This monograph includes the structural-kinetic modeling of complex polymer chemical reactions. It deals with the problem of mechanism and kinetics of free radical chain reactions using thermal and photochemical model reactions of dibenzoyl peroxide with glassy-like polymers (cellulose triacetate, polycarbonate, polystyrene, polyamide PA-548), viscoelastic polymers (atactic polypropylene, polyamide PA-548, polyethylene, polyisobutylene, melted poly(ethylene oxide), and isotactic polypropylene. In all cases, the supramolecular heterophase mechanism of the processes, which was unknown for homogeneous systems, was proved. Furthermore, heterophase mechanisms of photochemical reaction between naphthalene and cellulose triacetate and photolysis of poly(methyl methacrylate) proceeding as a photochain reaction are indicated.

Stationary and Non-Stationary Kinetics of the Photoinitiated Polymerization

Stationary and Non-Stationary Kinetics of the Photoinitiated Polymerization
Title Stationary and Non-Stationary Kinetics of the Photoinitiated Polymerization PDF eBook
Author Medvedevskikh
Publisher CRC Press
Pages 333
Release 2004-08-31
Genre Technology & Engineering
ISBN 9067644153

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The main focus in this monograph is on models of the kinetics of photo-initiated polymerization of mono- and bi-functional monomers up to the high conversion stage, their derivation, analysis and comparison with the experimental data. This monograph can be useful for scientists, engineers, post-graduate training students and students who are interested in problems both of the polymerization kinetics and general chemical kinetics.

Biocide Guanidine Containing Polymers

Biocide Guanidine Containing Polymers
Title Biocide Guanidine Containing Polymers PDF eBook
Author Sivov
Publisher CRC Press
Pages 157
Release 2006-03-01
Genre Science
ISBN 9047418069

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This volume deals with chemistry of polyelectrolytes, namely biocide guanidine containing polymers, discussing both synthesis of new guanidine containing monomers of diallyl and acrylic nature and their structure and investigation of their radical (co)polymerization and properties of new (co)polymers.The first parts of the book describe radical pol

Photodegradation and Light Stabilization of Heterochain Polymers

Photodegradation and Light Stabilization of Heterochain Polymers
Title Photodegradation and Light Stabilization of Heterochain Polymers PDF eBook
Author Niyazi
Publisher CRC Press
Pages 195
Release 2006-11-14
Genre Science
ISBN 9047410874

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Photodegradation and light stabilization are very important aspects of polymer aging. Polymer degradation includes different types of processes: thermodegradation, oxidation, acting of ozone, photodegradation, radiation, hydrolysis, mechanical degradation, and biodegradation. It is very important to know the mechanism of polymer degradation in orde