The sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcement

This study analyzes the potential of sanseviera fibers to be used as biocomposite reinforcement. Sansevieria fibers are characterized to improve physical and chemical properties so that they are stronger and can be used as a reinforcement for the composite matrix. Fiber alkaline treatment with NaOH...

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Main Authors: Edi Widodo, Mulyadi Mulyadi, Prantasi Harmi Tjahjanti, Fajar Syahril Kirom
Format: Article
Language:Indonesian
Published: Universitas Muhammadiyah Metro 2021-06-01
Series:Turbo: Jurnal Program Studi Teknik Mesin
Online Access:https://ojs.ummetro.ac.id/index.php/turbo/article/view/1542
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spelling doaj-b9a7be0ddbe34490ad1367e13716dddd2021-06-30T04:21:01ZindUniversitas Muhammadiyah MetroTurbo: Jurnal Program Studi Teknik Mesin2301-66632477-250X2021-06-0110110.24127/trb.v10i1.15421056The sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcementEdi Widodo0Mulyadi Mulyadi1Prantasi Harmi Tjahjanti2Fajar Syahril Kirom3Universitas Muhammadiyah SidoarjoUniversitas Muhammadiyah SidoarjoUniversitas Muhammadiyah SidoarjoUniversitas Muhammadiyah SidoarjoThis study analyzes the potential of sanseviera fibers to be used as biocomposite reinforcement. Sansevieria fibers are characterized to improve physical and chemical properties so that they are stronger and can be used as a reinforcement for the composite matrix. Fiber alkaline treatment with NaOH solution, proven to remove hemicellulose and lignin content, improve fiber properties, can increase the adhesiveness properties of the resin matrix. The fiber that has been treated with alkali is used as a bio-composite reinforcement using an epoxy resin matrix. FTIR test was carried out to obtain data from the compound groups of the fibers. Cellulose and hemicellulose contents were analyzed and the degree of crystallinity of the fibers to obtain compatibility with epoxy resin as a matrix. Chemical properties of Sansevieria fibers. Compared to PET and PETG fibers, as a composite reinforcing synthetic fiber with good compatibility with resins. This compatibility will determine the homogeneity of the adhesive properties of the fiber surface to the matrix. The bonding of microstructural compounds is very dependent on this property and will give the final result a better tensile strength of the composite. Keywords: biocomposite, sansevieria fibre, epoxy resin.https://ojs.ummetro.ac.id/index.php/turbo/article/view/1542
collection DOAJ
language Indonesian
format Article
sources DOAJ
author Edi Widodo
Mulyadi Mulyadi
Prantasi Harmi Tjahjanti
Fajar Syahril Kirom
spellingShingle Edi Widodo
Mulyadi Mulyadi
Prantasi Harmi Tjahjanti
Fajar Syahril Kirom
The sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcement
Turbo: Jurnal Program Studi Teknik Mesin
author_facet Edi Widodo
Mulyadi Mulyadi
Prantasi Harmi Tjahjanti
Fajar Syahril Kirom
author_sort Edi Widodo
title The sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcement
title_short The sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcement
title_full The sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcement
title_fullStr The sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcement
title_full_unstemmed The sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcement
title_sort sansevieria trifasciata fiber compatibility analysis for biocomposite reinforcement
publisher Universitas Muhammadiyah Metro
series Turbo: Jurnal Program Studi Teknik Mesin
issn 2301-6663
2477-250X
publishDate 2021-06-01
description This study analyzes the potential of sanseviera fibers to be used as biocomposite reinforcement. Sansevieria fibers are characterized to improve physical and chemical properties so that they are stronger and can be used as a reinforcement for the composite matrix. Fiber alkaline treatment with NaOH solution, proven to remove hemicellulose and lignin content, improve fiber properties, can increase the adhesiveness properties of the resin matrix. The fiber that has been treated with alkali is used as a bio-composite reinforcement using an epoxy resin matrix. FTIR test was carried out to obtain data from the compound groups of the fibers. Cellulose and hemicellulose contents were analyzed and the degree of crystallinity of the fibers to obtain compatibility with epoxy resin as a matrix. Chemical properties of Sansevieria fibers. Compared to PET and PETG fibers, as a composite reinforcing synthetic fiber with good compatibility with resins. This compatibility will determine the homogeneity of the adhesive properties of the fiber surface to the matrix. The bonding of microstructural compounds is very dependent on this property and will give the final result a better tensile strength of the composite. Keywords: biocomposite, sansevieria fibre, epoxy resin.
url https://ojs.ummetro.ac.id/index.php/turbo/article/view/1542
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