Time-temperature superposition principle and scaling behaviour

The time-temperature superposition principle, frequently used to describe the mechanical and electrical relaxation behaviour of polymers, is considered within the more general concept of scaling with translation path parallel to the abscissa. The most general functions leading to scaling with transl...

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Autores principales: Povolo, F., Fontelos, M.
Formato: JOUR
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_00222461_v22_n5_p1530_Povolo
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spelling todo:paper_00222461_v22_n5_p1530_Povolo2023-10-03T14:28:54Z Time-temperature superposition principle and scaling behaviour Povolo, F. Fontelos, M. MATHEMATICAL TECHNIQUES - Curve Fitting RELAXATION PROCESSES VISCOELASTICITY - Mathematical Models SUPERPOSITION PRINCIPLE TIME-TEMPERATURE SUPERPOSITION WILLIAMS-LANDEL-FERRY EQUATION POLYMERS The time-temperature superposition principle, frequently used to describe the mechanical and electrical relaxation behaviour of polymers, is considered within the more general concept of scaling with translation path parallel to the abscissa. The most general functions leading to scaling with translation path parallel to the horizontal axis are given. Furthermore, the meaning of the matching of the different curve segments, when the composite or master curve is constructed, is discussed. Finally, the concepts developed are applied to particular functions used for polymers and to the Williams- Landel-Ferry equation. © 1987 Chapman and Hall Ltd. Fil:Povolo, F. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Fontelos, M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_00222461_v22_n5_p1530_Povolo
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic MATHEMATICAL TECHNIQUES - Curve Fitting
RELAXATION PROCESSES
VISCOELASTICITY - Mathematical Models
SUPERPOSITION PRINCIPLE
TIME-TEMPERATURE SUPERPOSITION
WILLIAMS-LANDEL-FERRY EQUATION
POLYMERS
spellingShingle MATHEMATICAL TECHNIQUES - Curve Fitting
RELAXATION PROCESSES
VISCOELASTICITY - Mathematical Models
SUPERPOSITION PRINCIPLE
TIME-TEMPERATURE SUPERPOSITION
WILLIAMS-LANDEL-FERRY EQUATION
POLYMERS
Povolo, F.
Fontelos, M.
Time-temperature superposition principle and scaling behaviour
topic_facet MATHEMATICAL TECHNIQUES - Curve Fitting
RELAXATION PROCESSES
VISCOELASTICITY - Mathematical Models
SUPERPOSITION PRINCIPLE
TIME-TEMPERATURE SUPERPOSITION
WILLIAMS-LANDEL-FERRY EQUATION
POLYMERS
description The time-temperature superposition principle, frequently used to describe the mechanical and electrical relaxation behaviour of polymers, is considered within the more general concept of scaling with translation path parallel to the abscissa. The most general functions leading to scaling with translation path parallel to the horizontal axis are given. Furthermore, the meaning of the matching of the different curve segments, when the composite or master curve is constructed, is discussed. Finally, the concepts developed are applied to particular functions used for polymers and to the Williams- Landel-Ferry equation. © 1987 Chapman and Hall Ltd.
format JOUR
author Povolo, F.
Fontelos, M.
author_facet Povolo, F.
Fontelos, M.
author_sort Povolo, F.
title Time-temperature superposition principle and scaling behaviour
title_short Time-temperature superposition principle and scaling behaviour
title_full Time-temperature superposition principle and scaling behaviour
title_fullStr Time-temperature superposition principle and scaling behaviour
title_full_unstemmed Time-temperature superposition principle and scaling behaviour
title_sort time-temperature superposition principle and scaling behaviour
url http://hdl.handle.net/20.500.12110/paper_00222461_v22_n5_p1530_Povolo
work_keys_str_mv AT povolof timetemperaturesuperpositionprincipleandscalingbehaviour
AT fontelosm timetemperaturesuperpositionprincipleandscalingbehaviour
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