Fire Resistant and Thermally Stable Materials Derived from Chlorinated Polyethylene

Author:   Gennady Zaikov ,  A.A. Donskoi ,  M.A. Shashkina
Publisher:   Brill
Volume:   13
ISBN:  

9789067643733


Pages:   234
Publication Date:   25 June 2003
Format:   Hardback
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

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Fire Resistant and Thermally Stable Materials Derived from Chlorinated Polyethylene


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Author:   Gennady Zaikov ,  A.A. Donskoi ,  M.A. Shashkina
Publisher:   Brill
Imprint:   VSP International Science Publishers
Volume:   13
Weight:   0.521kg
ISBN:  

9789067643733


ISBN 10:   9067643734
Pages:   234
Publication Date:   25 June 2003
Audience:   College/higher education ,  Professional and scholarly ,  Undergraduate ,  Postgraduate, Research & Scholarly
Format:   Hardback
Publisher's Status:   Active
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

Table of Contents

Preface Introduction Combustion of polymeric materials and methods to reduce it. The mechanism of fire and heat shield covers Investigation methods for fire and heat shield materials and covers based on them Chlorinated polymers as the base for materials with reduced combustibility Current state of chlorinated polyolefins production and application Chlorination methods; Structure and properties Vulcanization Vulcanization effect on physical and mechanical properties and stability of materials Study of vulcanization mechanism and the effect of fillers Fillers Inorganic fillers and their function in decreasing combustibility Organic compounds increasing fire shield properties of materials Combustion decelerators. Operation mechanism and injection methods Methods of antipyren injection into materials Application of phosphorus-containing compounds on the silicon dioxide surface from the liquid phase Obtaining of phosphorus-containing silica filler by mechanochemical method Study of biological activity of phosphorus-containing silicon dioxides Study of fire and heat shield properties of materials filled with modified silicon dioxide Plasticizers Influence of plasticizers on glass transition temperature and flow rate of polymers Classification of plasticizers Selection of plasticizers Miscibility of plasticizers with polymers; Plasticizer effect on mechanical, fire and heat shield, and electrical properties of composite materials Tests of materials. Study of operation mechanism at high-temperature influence Coke formation as the investigation method of fire and heat shield materials and covers The role of intumescence in the problem of fire protection of polymers Intumescence chemistry; Protection through intumescence; The role of ammonium polyphosphates in protection of polymers from fire Development of fire and heat shield materials Climatic natural and artificial aging of materials Multilayer materials for increasing efficiency of covers Materials with surface reinforcement Heat-accumulating materials in cover compositions Estimation of thermophysical properties of heat-accumulating materials Tests of materials as covers for flight information recorders under conditions modeling an accident Conclusion References Subject Index

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Gennady Zaikov, A.A.Donskoi, M.A.Shashkina

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