Micromechanical models for fabrics and composites made of hybrid yarns from recycled carbon fibers

dc.contributor.authorLang, Tobias
dc.contributor.authorHasan, Mir Mohammad Badrul
dc.contributor.authorHuynh, Thy Anh My
dc.contributor.authorGereke, Thomas
dc.contributor.authorAbdkader, Anwar
dc.contributor.authorCherif, Chokri
dc.date.accessioned2022-11-24T12:59:50Z
dc.date.available2022-11-24T12:59:50Z
dc.date.issued2022
dc.description.abstractAlthough the great potential of carbon fibers for use in lightweight applications has been demonstrated in the past, their cost and environmental impact remain a barrier to their widespread use [1]. Recycling of carbon fibers from end-of-life components and combining them with thermoplastic fibers to form hybrid yarns addresses both issues. Due to the stochastic nature of hybrid yarns in terms of recycled carbon fiber (rCF) length and orientation [2], their influence on drapability and performance of rCF composites needs to be investigated. In this paper, a micromechanical model for analysing the dry and composite properties of yarns made from rCF is presented. By using a self-developed framework for generating representative volume elements (RVE) based on parameters such as fiber length, orientation, waviness, and fiber volume content, a variety of idealised random yarn geometries is created. A subsequent simulation step of the compaction of the RVE assures a more realistic RVE geometry. The models are validated by carrying out virtual tests and comparing the results with real tensile tests. The modelling approach can be used for further analyses.en_EN
dc.identifier.citationLang T., Hasan M.M.B., Huynh T.A.M., Gereke T., Abdkader A., Cherif, Ch., Micromechanical models for fabrics and composites made of hybrid yarns from recycled carbon fibers. W: AUTEX 2022 : 21st World Textile Conference AUTEX 2022 - AUTEX Conference Proceedings, Lodz University of Technology Press, Lodz 2022, s. 335-339, ISBN 978-83-66741-75-1, doi: 10.34658/9788366741751.70.
dc.identifier.doi10.34658/9788366741751.70
dc.identifier.isbn978-83-66741-75-1
dc.identifier.urihttp://hdl.handle.net/11652/4504
dc.identifier.urihttps://doi.org/10.34658/9788366741751.70
dc.language.isoenen_EN
dc.page.numbers. 335-339
dc.publisherWydawnictwo Politechniki Łódzkiejpl_PL
dc.publisherLodz University of Technology Pressen_EN
dc.relation.ispartofAUTEX 2022 : 21st World Textile Conference AUTEX 2022 - AUTEX Conference Proceedings, Lodz University of Technology Press, Lodz 2022, ISBN 978-83-66741-75-1, doi: 10.34658/9788366741751.
dc.rightsDla wszystkich w zakresie dozwolonego użytkupl_PL
dc.rightsFair use conditionen_EN
dc.rights.licenseLicencja PŁpl_PL
dc.rights.licenseLUT Licenseen_EN
dc.subjectfinite element methoden_EN
dc.subjecthybrid yarnsen_EN
dc.subjectmicromechanical modelen_EN
dc.subjectrecycling carbon fibersen_EN
dc.subjectmetoda elementów skończonychpl_PL
dc.subjectprzędze hybrydowepl_PL
dc.subjectmodel mikromechanicznypl_PL
dc.subjectrecykling włókien węglowychpl_PL
dc.titleMicromechanical models for fabrics and composites made of hybrid yarns from recycled carbon fibersen_EN
dc.typeartykuł - konferencjapl_PL
dc.typearticle - conferenceen_EN

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