Effect of alkali treatment on the flexural properties of a Luffa cylindrica-reinforced epoxy composite

This experimental study was conducted to investigate the effect of NaOH concentration and treatment time on the flexural properties of Luffa cylindrica fiber-reinforced epoxy composites. Significant improvement (up to 84.92%) in the flexural properties for the treated fiber composite compared with t...

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Main Authors: Mohanta Niharika, Acharya Samir K.
Format: Article
Language:English
Published: De Gruyter 2018-01-01
Series:Science and Engineering of Composite Materials
Subjects:
sem
Online Access:https://doi.org/10.1515/secm-2015-0148
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spelling doaj-36fa286c5d974195972d2d8c6d186d562021-09-05T14:00:31ZengDe GruyterScience and Engineering of Composite Materials0792-12332191-03592018-01-01251859310.1515/secm-2015-0148Effect of alkali treatment on the flexural properties of a Luffa cylindrica-reinforced epoxy compositeMohanta Niharika0Acharya Samir K.1Department of Mechanical Engineering, Government polytechnic, Balasore, Odisha, IndiaDepartment of Mechanical Engineering, NIT Rourkela-769008, Odisha, IndiaThis experimental study was conducted to investigate the effect of NaOH concentration and treatment time on the flexural properties of Luffa cylindrica fiber-reinforced epoxy composites. Significant improvement (up to 84.92%) in the flexural properties for the treated fiber composite compared with the untreated fiber composite was observed. Both treated and untreated fiber composites were then subjected to different environmental treatments (saline water, distilled water, and subzero temperature). To find out the changes in flexural strength immediately after treatment, the same test was carried out on the composites. Degradation in the flexural strength of both treated and untreated fiber composites, when subjected to environmental treatments, was observed. They were found within the range of 2%–20% and were found to be least in subzero treatment. The SEM micrograph indicates that alkali treatment is effective in improving the adhesion between the fiber and matrix.https://doi.org/10.1515/secm-2015-0148environmentflexural strengthluffa cylindrical fibersemsurface treatment
collection DOAJ
language English
format Article
sources DOAJ
author Mohanta Niharika
Acharya Samir K.
spellingShingle Mohanta Niharika
Acharya Samir K.
Effect of alkali treatment on the flexural properties of a Luffa cylindrica-reinforced epoxy composite
Science and Engineering of Composite Materials
environment
flexural strength
luffa cylindrical fiber
sem
surface treatment
author_facet Mohanta Niharika
Acharya Samir K.
author_sort Mohanta Niharika
title Effect of alkali treatment on the flexural properties of a Luffa cylindrica-reinforced epoxy composite
title_short Effect of alkali treatment on the flexural properties of a Luffa cylindrica-reinforced epoxy composite
title_full Effect of alkali treatment on the flexural properties of a Luffa cylindrica-reinforced epoxy composite
title_fullStr Effect of alkali treatment on the flexural properties of a Luffa cylindrica-reinforced epoxy composite
title_full_unstemmed Effect of alkali treatment on the flexural properties of a Luffa cylindrica-reinforced epoxy composite
title_sort effect of alkali treatment on the flexural properties of a luffa cylindrica-reinforced epoxy composite
publisher De Gruyter
series Science and Engineering of Composite Materials
issn 0792-1233
2191-0359
publishDate 2018-01-01
description This experimental study was conducted to investigate the effect of NaOH concentration and treatment time on the flexural properties of Luffa cylindrica fiber-reinforced epoxy composites. Significant improvement (up to 84.92%) in the flexural properties for the treated fiber composite compared with the untreated fiber composite was observed. Both treated and untreated fiber composites were then subjected to different environmental treatments (saline water, distilled water, and subzero temperature). To find out the changes in flexural strength immediately after treatment, the same test was carried out on the composites. Degradation in the flexural strength of both treated and untreated fiber composites, when subjected to environmental treatments, was observed. They were found within the range of 2%–20% and were found to be least in subzero treatment. The SEM micrograph indicates that alkali treatment is effective in improving the adhesion between the fiber and matrix.
topic environment
flexural strength
luffa cylindrical fiber
sem
surface treatment
url https://doi.org/10.1515/secm-2015-0148
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