Thermal Analysis of Plastics Theory and Practice

Thermal analysis has proven to be one of the most important and meaningful test methods in the plastics industry and in testing laboratories. Although thermal analysis is used for fundamental studies related to materials science of polymers, its power lies in understanding this behavior during manuf...

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Bibliographic Details
Main Authors: Ehrenstein, Gottfried W. (Author), Riedel, Gabriela (Author), Trawiel, Pia (Author)
Format: Book
Language:English
Published: Munich HANSER 2004
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Online Access:Click Here to View Status and Holdings.
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100 1 # |a Ehrenstein, Gottfried W.  |e author 
240 1 1 |a Praxis der thermischen Analyse von Kunststoffen  |l English 
245 1 0 |a Thermal Analysis of Plastics  |b Theory and Practice  |c Gottfried W. Ehrenstein, Gabriela Riedel, Pia Trawiel 
264 # 1 |a Munich  |b HANSER  |c 2004 
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300 # # |a xxix, 368 pages  |b some colour illustrations  |c 25 cm 
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504 # # |a Includes bibliographical references and index 
520 # # |a Thermal analysis has proven to be one of the most important and meaningful test methods in the plastics industry and in testing laboratories. Although thermal analysis is used for fundamental studies related to materials science of polymers, its power lies in understanding this behavior during manufacturing processes. This understanding aids in process optimization, reduction of manufacturing cycle times, failure analysis as well as overall improvement of the material properties of the finished product, to name a few. In this book, the different test methods and their variations are described in detail, emphasizing the principles and their application in practice. Using practical examples, different approaches to problem solving are presented with a focus on the interpretation of the experimental results. Thermal analysis provides information on important properties of plastic materials, such as nucleation, crystallization, degree of crystallinity, recrystallization, melting and solidification, glass transition, curing and postcuring, thermal stability, thermal expansion, relaxation of orientation and internal stresses, pvT-data, and others. 
650 # 0 |a Plastics  |x Testing 
650 # 0 |a Thermal analysis 
650 # 0 |a Plastics  |x Thermal properties 
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700 1 # |a Trawiel, Pia  |e author 
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