Mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites

This research investigates the hybrid effects between kenaf and glass fibres reinforced in modified epoxy filled with nanoclay. Kenaf fibres were treated with 2M Sodium Hydroxide (NaOH) solution. Epoxy was modified with 1 wt% silicon powder. Nanoclay loading was sonicated at 1.0 wt%, 3.0 wt% and 5....

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محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Tay, Chai Hua
التنسيق: أطروحة
اللغة:English
منشور في: 2018
الموضوعات:
الوصول للمادة أونلاين:http://psasir.upm.edu.my/id/eprint/77656/1/FK%202019%2039%20ir.pdf
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spelling my-upm-ir.776562022-01-25T04:46:51Z Mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites 2018-08 Tay, Chai Hua This research investigates the hybrid effects between kenaf and glass fibres reinforced in modified epoxy filled with nanoclay. Kenaf fibres were treated with 2M Sodium Hydroxide (NaOH) solution. Epoxy was modified with 1 wt% silicon powder. Nanoclay loading was sonicated at 1.0 wt%, 3.0 wt% and 5.0 wt% with respect to epoxy. Three layers of glass fibres and two layers of kenaf fibres were lay-up alternately, which constitute to 20 wt% of composite. Composites were then fabricated using hot compression moulding technique. Analysis from Fourier Transform Infrared Spectroscopy (FTIR) revealed the absence of hemicellulose, lignin and hydroxyl functional group on TK/Ep composite. Flexural test revealed improved flexural strength and flexural modulus among treated kenaf composites. Impact test was conducted at two different energy levels of 15 J and 30 J. It was observed that composite dispersed with nanoclay is capable of sustaining both the loads. Morphology study through Field Emission Scanning Electron Microscope (FESEM) revealed the roughness on the surface of the fractured treated kenaf fibre. Thermogravimetric Analysis (TGA) result shows that the highest initial decomposition temperature was achieved by GUK/Ep-Si/1% nanocomposite, with 2.386% higher than GTK/Ep-Si/1% nanocomposite. Dynamic Mechanical Analysis (DMA) result reveals that the glass transition temperature (Tg) of 3G2UK/Ep-Si/1% nanocomposite is 6% higher than GTK/Ep-Si/1% nanocomposite which indicates the lower free volume in GUK/Ep-Si/1%. Overall, it can be concluded that composite with treated kenaf has better mechanical properties while composites with untreated kenaf possesses better thermal properties. Epoxy compounds Glass - Thermal properties Glass fibers 2018-08 Thesis http://psasir.upm.edu.my/id/eprint/77656/ http://psasir.upm.edu.my/id/eprint/77656/1/FK%202019%2039%20ir.pdf text en public masters Universiti Putra Malaysia Epoxy compounds Glass - Thermal properties Glass fibers Mazlan, Norkhairunnisa
institution Universiti Putra Malaysia
collection PSAS Institutional Repository
language English
advisor Mazlan, Norkhairunnisa
topic Epoxy compounds
Glass - Thermal properties
Glass fibers
spellingShingle Epoxy compounds
Glass - Thermal properties
Glass fibers
Tay, Chai Hua
Mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites
description This research investigates the hybrid effects between kenaf and glass fibres reinforced in modified epoxy filled with nanoclay. Kenaf fibres were treated with 2M Sodium Hydroxide (NaOH) solution. Epoxy was modified with 1 wt% silicon powder. Nanoclay loading was sonicated at 1.0 wt%, 3.0 wt% and 5.0 wt% with respect to epoxy. Three layers of glass fibres and two layers of kenaf fibres were lay-up alternately, which constitute to 20 wt% of composite. Composites were then fabricated using hot compression moulding technique. Analysis from Fourier Transform Infrared Spectroscopy (FTIR) revealed the absence of hemicellulose, lignin and hydroxyl functional group on TK/Ep composite. Flexural test revealed improved flexural strength and flexural modulus among treated kenaf composites. Impact test was conducted at two different energy levels of 15 J and 30 J. It was observed that composite dispersed with nanoclay is capable of sustaining both the loads. Morphology study through Field Emission Scanning Electron Microscope (FESEM) revealed the roughness on the surface of the fractured treated kenaf fibre. Thermogravimetric Analysis (TGA) result shows that the highest initial decomposition temperature was achieved by GUK/Ep-Si/1% nanocomposite, with 2.386% higher than GTK/Ep-Si/1% nanocomposite. Dynamic Mechanical Analysis (DMA) result reveals that the glass transition temperature (Tg) of 3G2UK/Ep-Si/1% nanocomposite is 6% higher than GTK/Ep-Si/1% nanocomposite which indicates the lower free volume in GUK/Ep-Si/1%. Overall, it can be concluded that composite with treated kenaf has better mechanical properties while composites with untreated kenaf possesses better thermal properties.
format Thesis
qualification_level Master's degree
author Tay, Chai Hua
author_facet Tay, Chai Hua
author_sort Tay, Chai Hua
title Mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites
title_short Mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites
title_full Mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites
title_fullStr Mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites
title_full_unstemmed Mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites
title_sort mechanical strength and thermal stability of woven glass/kenaf fibre hybrid-reinforced nanoclay with epoxy composites
granting_institution Universiti Putra Malaysia
publishDate 2018
url http://psasir.upm.edu.my/id/eprint/77656/1/FK%202019%2039%20ir.pdf
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