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Modulated Temperature Differential Scanning Calorimetry: Theoretical and Practical Applications in Polymer Characterisation

MTDSC provides a step-change increase in the power of calorimetry to characterize virtually all polymer systems including curing systems, blends and semicrystalline polymers. It enables hidden transitions to be revealed, miscibility to be accurately assessed, and phases and interfaces in complex ble...

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Detalles Bibliográficos
Autores principales: Reading, Mike, Hourston, Douglas J
Lenguaje:eng
Publicado: Springer 2006
Materias:
Acceso en línea:https://dx.doi.org/10.1007/1-4020-3750-3
http://cds.cern.ch/record/1338637
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author Reading, Mike
Hourston, Douglas J
author_facet Reading, Mike
Hourston, Douglas J
author_sort Reading, Mike
collection CERN
description MTDSC provides a step-change increase in the power of calorimetry to characterize virtually all polymer systems including curing systems, blends and semicrystalline polymers. It enables hidden transitions to be revealed, miscibility to be accurately assessed, and phases and interfaces in complex blends to be quantified. It also enables crystallinity in complex systems to be measured and provides new insights into melting behaviour. All of this is achieved by a simple modification of conventional DSC. In 1992 a new calorimetric technique was introduced that superimposed a small modulation on top of the conventional linear temperature program typically used in differential scanning calorimetry. This was combined with a method of data analysis that enabled the sample’s response to the linear component of the temperature program to be separated from its response to the periodic component. In this way, for the first time, a signal equivalent to that of conventional DSC was obtained simultaneously with a measure of the sample’s heat capacity from the modulation. The new information this provided sparked a revolution in scanning calorimetry by enabling new insights to be gained into almost all aspects of polymer characteristics. This book provides both a basic and advanced treatment of the theory of the technique followed by a detailed exposition of its application to reacting systems, blends and semicrystalline polymers by the leaders in all of these fields. It is an essential text for anybody interested in calorimetry or polymer characterization, especially if they have found that conventional DSC cannot help them with their problems.
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spelling cern-13386372021-04-22T01:05:47Zdoi:10.1007/1-4020-3750-3http://cds.cern.ch/record/1338637engReading, MikeHourston, Douglas JModulated Temperature Differential Scanning Calorimetry: Theoretical and Practical Applications in Polymer CharacterisationScience in GeneralMTDSC provides a step-change increase in the power of calorimetry to characterize virtually all polymer systems including curing systems, blends and semicrystalline polymers. It enables hidden transitions to be revealed, miscibility to be accurately assessed, and phases and interfaces in complex blends to be quantified. It also enables crystallinity in complex systems to be measured and provides new insights into melting behaviour. All of this is achieved by a simple modification of conventional DSC. In 1992 a new calorimetric technique was introduced that superimposed a small modulation on top of the conventional linear temperature program typically used in differential scanning calorimetry. This was combined with a method of data analysis that enabled the sample’s response to the linear component of the temperature program to be separated from its response to the periodic component. In this way, for the first time, a signal equivalent to that of conventional DSC was obtained simultaneously with a measure of the sample’s heat capacity from the modulation. The new information this provided sparked a revolution in scanning calorimetry by enabling new insights to be gained into almost all aspects of polymer characteristics. This book provides both a basic and advanced treatment of the theory of the technique followed by a detailed exposition of its application to reacting systems, blends and semicrystalline polymers by the leaders in all of these fields. It is an essential text for anybody interested in calorimetry or polymer characterization, especially if they have found that conventional DSC cannot help them with their problems.Springeroai:cds.cern.ch:13386372006
spellingShingle Science in General
Reading, Mike
Hourston, Douglas J
Modulated Temperature Differential Scanning Calorimetry: Theoretical and Practical Applications in Polymer Characterisation
title Modulated Temperature Differential Scanning Calorimetry: Theoretical and Practical Applications in Polymer Characterisation
title_full Modulated Temperature Differential Scanning Calorimetry: Theoretical and Practical Applications in Polymer Characterisation
title_fullStr Modulated Temperature Differential Scanning Calorimetry: Theoretical and Practical Applications in Polymer Characterisation
title_full_unstemmed Modulated Temperature Differential Scanning Calorimetry: Theoretical and Practical Applications in Polymer Characterisation
title_short Modulated Temperature Differential Scanning Calorimetry: Theoretical and Practical Applications in Polymer Characterisation
title_sort modulated temperature differential scanning calorimetry: theoretical and practical applications in polymer characterisation
topic Science in General
url https://dx.doi.org/10.1007/1-4020-3750-3
http://cds.cern.ch/record/1338637
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