New Developments in Polymer Analysis, Stabilization and Degradation

New Developments in Polymer Analysis, Stabilization and Degradation
Title New Developments in Polymer Analysis, Stabilization and Degradation PDF eBook
Author Gennadiĭ Efremovich Zaikov
Publisher Nova Publishers
Pages 168
Release 2005
Genre Science
ISBN 9781594545115

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New Developments in Polymer Analysis, Stabilisation & Degradation

Polymer Degradation and Stabilization

Polymer Degradation and Stabilization
Title Polymer Degradation and Stabilization PDF eBook
Author W. L. Hawkins
Publisher Springer Science & Business Media
Pages 129
Release 2012-12-06
Genre Technology & Engineering
ISBN 3642693768

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The development of polymers as an important class of material was inhibited at the first by the premature failure of these versatile compounds in many applications. The deterioration of important properties of both natural and synthetic polymers is the result of irreversible changes in composition and structure of polymers molecules. As a result of these reactions, mechanical, electrical and/or aesthetic properties are degraded beyond acceptable limits. It is now generally recognized that stabilization against degradation is necessary if the useful life of polymers is to be extended sufficiently to meet design requirements for long-term applications. Polymers degrade by a wide variety of mechanisms, several of which affect all polymers through to varying degree. This monograph will concentrate on those degradation mechanisms which result from reactions of polymers with oxygen in its various forms and which are accelerated by heat and/or radiation. Those stabilization mechanisms are discussed which are based on an understanding of degradation reaction mechanisms that are reasonably well established. The stabilization of polymers is still undergoing a transition from an art to a science as mechanisms of degradation become more fully developed. A scientific approach to stabilization can only be approached when there is an understanding of the reactions that lead to degradation. Stabilization against biodegradation and burning will not be discussed since there is not a clear understanding of how polymers degrade under these conditions.

Thermal Degradation of Polymeric Materials

Thermal Degradation of Polymeric Materials
Title Thermal Degradation of Polymeric Materials PDF eBook
Author Krzysztof Pielichowski
Publisher iSmithers Rapra Publishing
Pages 324
Release 2005
Genre Science
ISBN 9781859574980

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Understanding the thermal degradation of polymers is of paramount importance for developing a rational technology of polymer processing and higher-temperature applications. Controlling degradation requires understanding of many different phenomena, including chemical mechanisms, the influence of polymer morphology, the complexities of oxidation chemistry, and the effects of stabilisers, fillers and other additives. This book offers a wealth of information for polymer researchers and processors requiring an understanding of the implications of thermal degradation on material and product performance.

Mechanisms of Polymer Degradation and Stabilisation

Mechanisms of Polymer Degradation and Stabilisation
Title Mechanisms of Polymer Degradation and Stabilisation PDF eBook
Author G. Scott
Publisher Springer Science & Business Media
Pages 336
Release 2012-12-06
Genre Technology & Engineering
ISBN 9401138389

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The purpose of this publication is two-fold. In the first place it is intended to review progress in the development of practical stabilising systems for a wide range of polymers and applications. A complemen tary and ultimately more important objective is to accommodate these practical developments within the framework of antioxidant theory, since there can be little question that further major advances in the practice of stabilisation technology will only be possible on a firm mechanistic foundation. With the continual increase in the number of commercial anti oxidants and stabilisers, often functioning by mechanisms not even considered ten years ago, there is a need for a general theory which will allow the potential user to predict the performance of a particular antioxidant structure under specific practical conditions. Any such predictive tool must involve a simplified kinetic approach to inhibited oxidation and, in Chapter 1, Denisov outlines a possible mechanistic approach with the potential to predict the most useful antioxidant to use and the limits of its usefulness. In Chapter 2, Schwetlick reviews the current state of knowledge on the antioxidant mechanisms of the phosphite esters with particular emphasis on their catalytic peroxidolytic activity. Dithiophosphate v vi PREFACE derivatives show a similar behaviour but for quite different reasons and, in Chapter 3, AI-Malaika reviews information available from analytical studies, particularly using 31p_NMR spectroscopy, to elucid ate the complex chemistry that leads to the formation of the antioxidant -active agents.

Physical Properties of Polymers

Physical Properties of Polymers
Title Physical Properties of Polymers PDF eBook
Author James E. Mark
Publisher
Pages 430
Release 1993
Genre Science
ISBN

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The contents have been divided into sections on physical states of polymers and characterization techniques. Chapters on physical states include discussions of the rubber elastic state, the glassy state, melts and concentrated solutions, the crystalline state, and the mesomorphic state. Characterization techniques described are molecular spectroscopy and scattering techniques.

Degradable Polymers

Degradable Polymers
Title Degradable Polymers PDF eBook
Author G. Scott
Publisher Springer Science & Business Media
Pages 284
Release 2012-12-06
Genre Technology & Engineering
ISBN 9401105715

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Few scientific developments in recent years have captured the popular imagination like the subject of'biodegradable' plastics. The reasons for this are complex and lie deep in the human subconscious. Discarded plastics are an intrusion on the sea shore and in the countryside. The fact that nature's litter abounds in the sea and on land is acceptable because it is biodegradable - even though it may take many years to be bioassimilated into the ecosystem. Plastics litter is not seen to be biodegradable and is aesthetically unacceptable because it does not blend into the natural environment. To the environmentally aware but often scientifically naive, biodegradation is seen to be the ecologically acceptable solution to the problem of plastic packaging waste and litter and some packaging manufacturers have exploited the 'green' consumer with exaggerated claims to 'environmentally friendly' biodegradable packaging materials. The principles underlying environmental degradation are not understood even by some manufacturers of 'biodegradable' materials and the claims made for them have been categorized as 'deceptive' by USA legislative authorities. This has set back the acceptance of plastics with controlled biodegradability as part of the overall waste and litter control strategy. At the opposite end of the commercial spectrum, the polymer manufactur ing industries, through their trade associations, have been at pains to discount the role of degradable materials in waste and litter management. This negative campaign has concentrated on the supposed incompatibility of degradable plastics with aspects of waste management strategy, notably materials recycling.

Polymer Analysis, Degradation, and Stabilization

Polymer Analysis, Degradation, and Stabilization
Title Polymer Analysis, Degradation, and Stabilization PDF eBook
Author Gennadiĭ Efremovich Zaikov
Publisher Nova Publishers
Pages 192
Release 2005
Genre Science
ISBN 9781594542169

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Polymer Analysis, Degradation & Stabilization