Thermosetting Resins Based on Poly(Ethylene Glycol Fumarate) and Acrylic Acid: Rheological and Thermal Analysis
Gulsym Burkeyeva, Anna Kovaleva, Zhansaya Ibrayeva, David Havlicek, Yelena Minayeva, Aiman Omasheva, Elmira Zhakupbekova, Margarita Nurmaganbetova

TL;DR
This paper studies a new type of thermosetting resin that can be tailored for different uses by adjusting its composition and temperature.
Contribution
The first investigation of the rheological behavior and curing kinetics of poly(ethylene glycol fumarate)–acrylic acid systems.
Findings
The composition and temperature significantly affect rheological behavior and kinetic parameters.
Higher polyester content retards gelation, which is important for controlling pot life.
Thermal decomposition shows increased activation energy, indicating structural stabilization.
Abstract
The rheological behavior and low-temperature curing kinetics of poly(ethylene glycol fumarate)–acrylic acid systems initiated by benzoyl peroxide/N,N-dimethylaniline have been investigated for the first time with a focus on the development of thermosetting binders with controllable properties. It has been established that both composition and temperature have a significant effect on rheological behavior and kinetic parameters. Rheological studies revealed non-Newtonian flow behavior and thixotropic properties, while oscillatory tests demonstrated structural transformations during curing. Increasing the temperature was found to accelerate gelation, whereas a higher polyester content retarded the process, which is crucial for controlling the pot life of the reactive mixture. DSC analysis indicated that isothermal curing at 30–40 °C can be satisfactorily described by the Kamal…
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Taxonomy
TopicsEpoxy Resin Curing Processes · Polymer Science and PVC · Advanced Polymer Synthesis and Characterization
