Pultrusion of Bendable Continuous Fibers Reinforced Composites With Reactive Acrylic Thermoplastic ELIUM® Resin

Continuous fiber reinforced composites were made using in-situ polymerization of a new liquid thermoplastic resin. Depending on the temperature profile in the die and the initiators used, it was shown that PREDICI software enables the simulation of the radical polymerization reaction. By using an ap...

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Main Authors: Alexander Zoller, Pierre Escalé, Pierre Gérard
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-12-01
Series:Frontiers in Materials
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fmats.2019.00290/full
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author Alexander Zoller
Pierre Escalé
Pierre Gérard
author_facet Alexander Zoller
Pierre Escalé
Pierre Gérard
author_sort Alexander Zoller
collection DOAJ
description Continuous fiber reinforced composites were made using in-situ polymerization of a new liquid thermoplastic resin. Depending on the temperature profile in the die and the initiators used, it was shown that PREDICI software enables the simulation of the radical polymerization reaction. By using an appropriate sizing for the fibers, the properties of the pultruded part are comparable to standard thermoset resins. Moreover, the specific thermoplastic behavior of the matrix provides the unique advantage of being post-formable or shapeable as desired while maintaining mechanical performances.
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spelling doaj.art-d70bbc265a82467a8ac6c8ca3aa3d59f2022-12-22T01:22:43ZengFrontiers Media S.A.Frontiers in Materials2296-80162019-12-01610.3389/fmats.2019.00290482691Pultrusion of Bendable Continuous Fibers Reinforced Composites With Reactive Acrylic Thermoplastic ELIUM® ResinAlexander ZollerPierre EscaléPierre GérardContinuous fiber reinforced composites were made using in-situ polymerization of a new liquid thermoplastic resin. Depending on the temperature profile in the die and the initiators used, it was shown that PREDICI software enables the simulation of the radical polymerization reaction. By using an appropriate sizing for the fibers, the properties of the pultruded part are comparable to standard thermoset resins. Moreover, the specific thermoplastic behavior of the matrix provides the unique advantage of being post-formable or shapeable as desired while maintaining mechanical performances.https://www.frontiersin.org/article/10.3389/fmats.2019.00290/fullCFRCthermoplastic compositeELIUM®pultrusionacrylic resinmodeling
spellingShingle Alexander Zoller
Pierre Escalé
Pierre Gérard
Pultrusion of Bendable Continuous Fibers Reinforced Composites With Reactive Acrylic Thermoplastic ELIUM® Resin
Frontiers in Materials
CFRC
thermoplastic composite
ELIUM®
pultrusion
acrylic resin
modeling
title Pultrusion of Bendable Continuous Fibers Reinforced Composites With Reactive Acrylic Thermoplastic ELIUM® Resin
title_full Pultrusion of Bendable Continuous Fibers Reinforced Composites With Reactive Acrylic Thermoplastic ELIUM® Resin
title_fullStr Pultrusion of Bendable Continuous Fibers Reinforced Composites With Reactive Acrylic Thermoplastic ELIUM® Resin
title_full_unstemmed Pultrusion of Bendable Continuous Fibers Reinforced Composites With Reactive Acrylic Thermoplastic ELIUM® Resin
title_short Pultrusion of Bendable Continuous Fibers Reinforced Composites With Reactive Acrylic Thermoplastic ELIUM® Resin
title_sort pultrusion of bendable continuous fibers reinforced composites with reactive acrylic thermoplastic elium r resin
topic CFRC
thermoplastic composite
ELIUM®
pultrusion
acrylic resin
modeling
url https://www.frontiersin.org/article/10.3389/fmats.2019.00290/full
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AT pierregerard pultrusionofbendablecontinuousfibersreinforcedcompositeswithreactiveacrylicthermoplasticeliumresin