Studies on cure kinetics and thermal stability of liquid epoxy resin based on bisphenol-C and epichlorohydrin using different amines as curing agents
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Condensed Matter Physics,Instrumentation
Reference11 articles.
1. Curing of epoxy resin of 1,1'-bis(4-hydroxy phenyl) cyclohexane with phthalic anhydride. A differential scanning calorimetric investigation
2. Cure kinetics of a low epoxide/hydroxyl group-ratio bisphenol a epoxy resin–anhydride system by infrared absorption spectroscopy
3. The Application of Differential Thermal Analysis to the Study of Reaction Kinetics1
4. The Application of Thermoanalytical Techniques to Reaction Kinetics: The Thermogravimetric Evaluation of the Kinetics of the Decomposition of Calcium Oxalate Monohydrate
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1. Molecular Interactions in Solutions of 1,1-Bis(4-(2-oxopropoxy)phenyl)cyclohexane on Ultrasonic Velocity, Density, and Viscosimetric Data;Russian Journal of Physical Chemistry A;2019-06
2. DSC-TG studies on kinetics of curing and thermal decomposition of epoxy–ether amine systems;Journal of Thermal Analysis and Calorimetry;2012-12-11
3. Mesua ferrea L. seed oil based amido-amine modified nanoclay/epoxy nanocomposites;Journal of Applied Polymer Science;2011-10-26
4. Thermostable and flame retardant Mesua ferrea L. seed oil based non-halogenated epoxy resin/clay nanocomposites;Progress in Organic Coatings;2010-12
5. Thermal degradation and stability of epoxy nanocomposites: Influence of montmorillonite content and cure temperature;Polymer Degradation and Stability;2008-05
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