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Chemically Degradable Vitrimers Based on Divanillin Imine Diepoxy Monomer and Aliphatic Diamines for Enhanced Carbon Fiber Composite Applications

  • Identification data

    Identifier: imarina:9387470
    Authors:
    Telatin, TommasoDe la Flor, SilviaMontane, XavierSerra, Angels
    Abstract:
    This study presents the development of a diglycidyl monomer containing two imine groups that can act as dynamic and reversible bonds. During the curing of the monomer with two different amine hardeners, we confirmed the formation of new imine groups due to the transamination reaction between the imine groups of the diepoxy monomer with the amine groups of the hardener. The effect of this structural change was observed in the stress relaxation behavior, resulting in the overlapping of two different relaxation modes. The analytical modelling was able to extract two distinct characteristic relaxation times using a double-element Maxwell model. A second characterization of the stress relaxation process by frequency sweep experiments was performed to corroborate the results obtained, confirming speedy stress relaxation. Acid-catalyzed hydrolysis was performed on the studied materials, demonstrating the complete degradation of the network. We finally confirmed that the synthesized diepoxy compound is suitable for preparing carbon-fiber-reinforced composite materials, demonstrating easy fiber impregnation, fast reshaping, and especially a total degradation of the polymer matrix that allows for the recovery of the carbon fibers in mild conditions. This epoxy-amine system is an excellent candidate for overcoming the traditional limits of thermosets in preparing fiber-reinforced composites.
  • Others:

    Author, as appears in the article.: Telatin, Tommaso; De la Flor, Silvia; Montane, Xavier; Serra, Angels
    Department: Química Analítica i Química Orgànica
    URV's Author/s: De la Flor Lopez, Silvia / Montané Montané, Xavier / Serra Albet, Maria Angels / Telatin, Tommaso
    Keywords: Carbon fiber composite Carbon fiber composites Chemical degradation Creep resistance Density Elasticity Epoxy vitrimers Ful Polyimine-epoxy vitrimers Polyimine–epoxy vitrimers
    Abstract: This study presents the development of a diglycidyl monomer containing two imine groups that can act as dynamic and reversible bonds. During the curing of the monomer with two different amine hardeners, we confirmed the formation of new imine groups due to the transamination reaction between the imine groups of the diepoxy monomer with the amine groups of the hardener. The effect of this structural change was observed in the stress relaxation behavior, resulting in the overlapping of two different relaxation modes. The analytical modelling was able to extract two distinct characteristic relaxation times using a double-element Maxwell model. A second characterization of the stress relaxation process by frequency sweep experiments was performed to corroborate the results obtained, confirming speedy stress relaxation. Acid-catalyzed hydrolysis was performed on the studied materials, demonstrating the complete degradation of the network. We finally confirmed that the synthesized diepoxy compound is suitable for preparing carbon-fiber-reinforced composite materials, demonstrating easy fiber impregnation, fast reshaping, and especially a total degradation of the polymer matrix that allows for the recovery of the carbon fibers in mild conditions. This epoxy-amine system is an excellent candidate for overcoming the traditional limits of thermosets in preparing fiber-reinforced composites.
    Thematic Areas: Astronomia / física Biotecnología Chemistry (all) Chemistry (miscellaneous) Ciências biológicas ii Engenharias ii Farmacia General chemistry Odontología Polymer science Polymers and plastics
    licence for use: https://creativecommons.org/licenses/by/3.0/es/
    Author's mail: silvia.delaflor@urv.cat xavier.montane@urv.cat tommaso.telatin@urv.cat angels.serra@urv.cat
    Author identifier: 0000-0002-6851-1371 0000-0002-1426-239X 0000-0003-1387-0358
    Record's date: 2024-10-26
    Papper version: info:eu-repo/semantics/publishedVersion
    Papper original source: Polymers. 16 (19): 2754-
    APA: Telatin, Tommaso; De la Flor, Silvia; Montane, Xavier; Serra, Angels (2024). Chemically Degradable Vitrimers Based on Divanillin Imine Diepoxy Monomer and Aliphatic Diamines for Enhanced Carbon Fiber Composite Applications. Polymers, 16(19), 2754-. DOI: 10.3390/polym16192754
    Licence document URL: https://repositori.urv.cat/ca/proteccio-de-dades/
    Entity: Universitat Rovira i Virgili
    Journal publication year: 2024
    Publication Type: Journal Publications
  • Keywords:

    Chemistry (Miscellaneous),Polymer Science,Polymers and Plastics
    Carbon fiber composite
    Carbon fiber composites
    Chemical degradation
    Creep resistance
    Density
    Elasticity
    Epoxy vitrimers
    Ful
    Polyimine-epoxy vitrimers
    Polyimine–epoxy vitrimers
    Astronomia / física
    Biotecnología
    Chemistry (all)
    Chemistry (miscellaneous)
    Ciências biológicas ii
    Engenharias ii
    Farmacia
    General chemistry
    Odontología
    Polymer science
    Polymers and plastics
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