Mechanical and Thermal Adsorption Actions on Epoxy Hybrid Composite Layered with Various Sequences of Alkali-Treated Jute and Carbon Fibre

Structural applications are accomplished by using a lightweight epoxy matrix bonded with natural jute fibre/synthetic carbon fibre to enhance the physical, mechanical, and thermal properties obtained by different sequences of alkali-treated jute fibre (J.F.)/carbon fibre (C.F.) through conventional...

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Main Authors: R. Sasikumar, K. Venkadeshwaran, C. Ramesh Kannan, Melvin Victor De Poures, M. Aruna, N. Mukilarasan, Gopal Kaliyaperumal, Arundeep Murugan
Format: Article
Language:English
Published: SAGE Publishing 2023-01-01
Series:Adsorption Science & Technology
Online Access:http://dx.doi.org/10.1155/2023/5272245
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author R. Sasikumar
K. Venkadeshwaran
C. Ramesh Kannan
Melvin Victor De Poures
M. Aruna
N. Mukilarasan
Gopal Kaliyaperumal
Arundeep Murugan
author_facet R. Sasikumar
K. Venkadeshwaran
C. Ramesh Kannan
Melvin Victor De Poures
M. Aruna
N. Mukilarasan
Gopal Kaliyaperumal
Arundeep Murugan
author_sort R. Sasikumar
collection DOAJ
description Structural applications are accomplished by using a lightweight epoxy matrix bonded with natural jute fibre/synthetic carbon fibre to enhance the physical, mechanical, and thermal properties obtained by different sequences of alkali-treated jute fibre (J.F.)/carbon fibre (C.F.) through conventional hand layup technique. The sequences of the sample are named as H1, H2, H3, and H4 layers of JF/JF/JF/JF, CF/CF/CF/CF, JF/CF/CF/JF, and CF/JF/JF/CF. Influences of JF/CF on physical, mechanical, and thermal adsorption properties of the epoxy composite are evaluated and compared. The mechanical tensile performance of the jute fibre-covered (JF/CF/CF/JF) composite H3 sample is augmented by 29% compared to the H4 sample. Similarly, the CF/JF/JF/CF combinations exhibited a higher impact strength of 129.71 KJ/m2. The maximum hardness of 47.12Hv was found on the four-layered carbon fibre. The thermal adsorption actions on developed composites are evaluated by thermogravimetric apparatus (TGA). It is confirmed that the presence of JF/CF in epoxy composites can endure stability at a higher temperature.
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spelling doaj.art-7e3deb27ab2048be881ce2d3d86283c42025-01-03T01:19:27ZengSAGE PublishingAdsorption Science & Technology2048-40382023-01-01202310.1155/2023/5272245Mechanical and Thermal Adsorption Actions on Epoxy Hybrid Composite Layered with Various Sequences of Alkali-Treated Jute and Carbon FibreR. Sasikumar0K. Venkadeshwaran1C. Ramesh Kannan2Melvin Victor De Poures3M. Aruna4N. Mukilarasan5Gopal Kaliyaperumal6Arundeep Murugan7Department of Mechanical EngineeringDepartment Mechanical EngineeringDepartment of Mechanical EngineeringDepartment of Thermal EngineeringFaculty of Mechanical and Industrial EngineeringDepartment of Mechanical EngineeringDepartment of Mechanical EngineeringSchool of Mechanical and Industrial EngineeringStructural applications are accomplished by using a lightweight epoxy matrix bonded with natural jute fibre/synthetic carbon fibre to enhance the physical, mechanical, and thermal properties obtained by different sequences of alkali-treated jute fibre (J.F.)/carbon fibre (C.F.) through conventional hand layup technique. The sequences of the sample are named as H1, H2, H3, and H4 layers of JF/JF/JF/JF, CF/CF/CF/CF, JF/CF/CF/JF, and CF/JF/JF/CF. Influences of JF/CF on physical, mechanical, and thermal adsorption properties of the epoxy composite are evaluated and compared. The mechanical tensile performance of the jute fibre-covered (JF/CF/CF/JF) composite H3 sample is augmented by 29% compared to the H4 sample. Similarly, the CF/JF/JF/CF combinations exhibited a higher impact strength of 129.71 KJ/m2. The maximum hardness of 47.12Hv was found on the four-layered carbon fibre. The thermal adsorption actions on developed composites are evaluated by thermogravimetric apparatus (TGA). It is confirmed that the presence of JF/CF in epoxy composites can endure stability at a higher temperature.http://dx.doi.org/10.1155/2023/5272245
spellingShingle R. Sasikumar
K. Venkadeshwaran
C. Ramesh Kannan
Melvin Victor De Poures
M. Aruna
N. Mukilarasan
Gopal Kaliyaperumal
Arundeep Murugan
Mechanical and Thermal Adsorption Actions on Epoxy Hybrid Composite Layered with Various Sequences of Alkali-Treated Jute and Carbon Fibre
Adsorption Science & Technology
title Mechanical and Thermal Adsorption Actions on Epoxy Hybrid Composite Layered with Various Sequences of Alkali-Treated Jute and Carbon Fibre
title_full Mechanical and Thermal Adsorption Actions on Epoxy Hybrid Composite Layered with Various Sequences of Alkali-Treated Jute and Carbon Fibre
title_fullStr Mechanical and Thermal Adsorption Actions on Epoxy Hybrid Composite Layered with Various Sequences of Alkali-Treated Jute and Carbon Fibre
title_full_unstemmed Mechanical and Thermal Adsorption Actions on Epoxy Hybrid Composite Layered with Various Sequences of Alkali-Treated Jute and Carbon Fibre
title_short Mechanical and Thermal Adsorption Actions on Epoxy Hybrid Composite Layered with Various Sequences of Alkali-Treated Jute and Carbon Fibre
title_sort mechanical and thermal adsorption actions on epoxy hybrid composite layered with various sequences of alkali treated jute and carbon fibre
url http://dx.doi.org/10.1155/2023/5272245
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