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Sub-T
g
annealing studies of rubber-modified and unmodified epoxy systems
Zohar H. Ophir
, John A. Emerson
, Garth L. Wilkes
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Contribution to journal
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Article
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peer-review
87
Scopus citations
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g
annealing studies of rubber-modified and unmodified epoxy systems'. Together they form a unique fingerprint.
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Keyphrases
Rubber-modified
100%
Bisphenol A Diglycidyl Ether (BADGE)
100%
Epoxy Resin Systems
100%
Sub-Tg Annealing
100%
Annealing Studies
100%
Network Systems
50%
Mechanical Properties
50%
Systems-based
50%
Rubber
50%
Glass Transition
50%
Methyl
50%
Acrylonitrile Copolymer
50%
Bisphenol A
50%
Low Molecular Weight
50%
Nonequilibrium Steady State
50%
Linear Behavior
50%
Anhydride
50%
Stress Relaxation
50%
Carboxyl
50%
Time-dependent Mechanical Properties
50%
Time-dependent Changes
50%
Epoxy Networks
50%
Epoxy Matrix
50%
Network Glass
50%
Engineering
Network System
100%
Molecular Weight
100%
Dependent Mechanical Property
100%
Nonequilibrium State
100%
Linear Behavior
100%
Stress Relaxation
100%
Bisphenol
100%
Glass Network
100%
Epoxy Matrix
100%
Chemistry
Nonequilibrium
100%
Copolymer
100%
Molecular Mass
100%
Glass Transition
100%
Enthalpy
100%
Acrylonitrile
100%
Anhydride
100%
Stress Relaxation
100%
Bisphenol A Diglycidyl Ether
100%
Material Science
Copolymer
100%
Glass Transition
100%
Annealing
100%
Stress Relaxation
100%