Hybrid fiber-reinforced composite with carbon, glass, basalt, and para-aramid fibers for light use applications

This study explores the possibility of incorporating carbon fibers (CFs), basalt fibers, glass fibers, and p-aramid reinforcement fibers into carbon fiber–reinforced composites for light use applications. Hybrid composites can overcome the weakness of CFs and provide flexibility to design materials...

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Main Authors: Jinwon Cho, Jaehyeung Park
Format: Article
Language:English
Published: IOP Publishing 2021-01-01
Series:Materials Research Express
Subjects:
Online Access:https://doi.org/10.1088/2053-1591/ac406f
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author Jinwon Cho
Jaehyeung Park
author_facet Jinwon Cho
Jaehyeung Park
author_sort Jinwon Cho
collection DOAJ
description This study explores the possibility of incorporating carbon fibers (CFs), basalt fibers, glass fibers, and p-aramid reinforcement fibers into carbon fiber–reinforced composites for light use applications. Hybrid composites can overcome the weakness of CFs and provide flexibility to design materials with the desired properties. The mechanical properties (tensile, flexural, and puncture impact properties) of the prepared hybrid composite were evaluated according to the standards ASTM D3039, ASTM D790, and ISO 6603-2, respectively. The inherent properties of reinforcement fibers, weaving density, and impregnation of a thermoplastic matrix into the composite considerably impact the mechanical performance of the hybrid composite materials.
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spelling doaj.art-2b3d3645291b45eeb0f172b3c26e53482023-08-09T15:58:21ZengIOP PublishingMaterials Research Express2053-15912021-01-0181212530410.1088/2053-1591/ac406fHybrid fiber-reinforced composite with carbon, glass, basalt, and para-aramid fibers for light use applicationsJinwon Cho0Jaehyeung Park1https://orcid.org/0000-0002-8255-5493SHIN HEUNG, Republic of KoreaDepartment of Bio-Fibers and Materials Science, Kyungpook National University , Daegu, Republic of KoreaThis study explores the possibility of incorporating carbon fibers (CFs), basalt fibers, glass fibers, and p-aramid reinforcement fibers into carbon fiber–reinforced composites for light use applications. Hybrid composites can overcome the weakness of CFs and provide flexibility to design materials with the desired properties. The mechanical properties (tensile, flexural, and puncture impact properties) of the prepared hybrid composite were evaluated according to the standards ASTM D3039, ASTM D790, and ISO 6603-2, respectively. The inherent properties of reinforcement fibers, weaving density, and impregnation of a thermoplastic matrix into the composite considerably impact the mechanical performance of the hybrid composite materials.https://doi.org/10.1088/2053-1591/ac406fhybrid compositecarbon fiberglass fiberbasalt fiberpara-aramid fiberpolyamide 6
spellingShingle Jinwon Cho
Jaehyeung Park
Hybrid fiber-reinforced composite with carbon, glass, basalt, and para-aramid fibers for light use applications
Materials Research Express
hybrid composite
carbon fiber
glass fiber
basalt fiber
para-aramid fiber
polyamide 6
title Hybrid fiber-reinforced composite with carbon, glass, basalt, and para-aramid fibers for light use applications
title_full Hybrid fiber-reinforced composite with carbon, glass, basalt, and para-aramid fibers for light use applications
title_fullStr Hybrid fiber-reinforced composite with carbon, glass, basalt, and para-aramid fibers for light use applications
title_full_unstemmed Hybrid fiber-reinforced composite with carbon, glass, basalt, and para-aramid fibers for light use applications
title_short Hybrid fiber-reinforced composite with carbon, glass, basalt, and para-aramid fibers for light use applications
title_sort hybrid fiber reinforced composite with carbon glass basalt and para aramid fibers for light use applications
topic hybrid composite
carbon fiber
glass fiber
basalt fiber
para-aramid fiber
polyamide 6
url https://doi.org/10.1088/2053-1591/ac406f
work_keys_str_mv AT jinwoncho hybridfiberreinforcedcompositewithcarbonglassbasaltandparaaramidfibersforlightuseapplications
AT jaehyeungpark hybridfiberreinforcedcompositewithcarbonglassbasaltandparaaramidfibersforlightuseapplications