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Recycling of Epoxy/Fiberglass Composite Using Pyridine
Alexander E Protsenko1, Alexandra N Protsenko1, Olga G Shakirova1
1Department of Chemistry and Chemical Technology, Komsomolsk-na-Amure State University, Komsomolsk-on-Amur 681013, Russia.
Pyridine solvolysis effectively recovers high-quality glass fibers from epoxy composites. Subcritical processing at 250°C preserves 93% tensile strength, enhancing recycled fiberglass-reinforced plastic properties.
Area of Science:
- Materials Science
- Chemical Engineering
- Polymer Chemistry
Background:
- Epoxy composites pose recycling challenges.
- Developing efficient methods for recovering high-quality glass fibers is crucial for sustainable materials management.
Purpose of the Study:
- To introduce a novel pyridine-based solvolysis method for recycling epoxy composites.
- To evaluate the quality and properties of recovered glass fibers.
- To assess the performance of recycled materials in new composite applications.
Main Methods:
- Solvolysis of epoxy composites using pyridine under varying temperature conditions (ambient to subcritical, up to 280°C).
- Analysis of recovered fiber properties including tensile strength and surface characteristics via thermogravimetric analysis.
- Fabrication and testing of new fiberglass-reinforced plastic (FGRP) using recycled fibers.
Main Results:
- Pyridine solvolysis effectively swells and degrades the epoxy matrix.
- Glass fibers recovered at boiling point retained 91% tensile strength with 20% surface degradation products.
- Subcritical processing at 250°C for 2 hours yielded fibers with 93% residual tensile strength and minimal organic surface components (2.82%).
- FGRP made with recycled fibers showed a 16.1% increase in flexural strength.
Conclusions:
- Pyridine solvolysis is a viable and effective method for recycling epoxy composites.
- Subcritical pyridine treatment significantly enhances the quality of recycled glass fibers.
- Recycled fibers improve the mechanical properties of new fiberglass-reinforced plastic products, promoting circular economy principles.
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