The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan

A basic purpose of a good healing patch is to reduce the reproduction of bacteria in the wounded area with minimal effect of mechanical properties. This study focuses on the basic mechanical and biomechanical properties of the material for a healing patch application with a new composition of biodeg...

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Main Authors: Mohd Nazali, Nur Nabila, Adull Manan, Nor Fazli
Format: Article
Language:English
Published: Universiti Teknologi MARA 2021
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Online Access:https://ir.uitm.edu.my/id/eprint/52961/1/52961.pdf
https://ir.uitm.edu.my/id/eprint/52961/
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spelling my.uitm.ir.529612021-11-03T09:21:14Z https://ir.uitm.edu.my/id/eprint/52961/ The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan Mohd Nazali, Nur Nabila Adull Manan, Nor Fazli Analytical chemistry Biotechnology A basic purpose of a good healing patch is to reduce the reproduction of bacteria in the wounded area with minimal effect of mechanical properties. This study focuses on the basic mechanical and biomechanical properties of the material for a healing patch application with a new composition of biodegradable ingredients by using the estimation of hyperelastic models to fit with the experimental data and the comparison between the commercial Aloe vera gels and original Aloe vera leaves. This project was started with a material selection which is gelatine and Aloe vera leaves as the main ingredient. Secondly, the specimen sets undergo a uniaxial tensile test to obtain the raw data. For numerical phases, the conventional theory of large deformation based on hyperelastic constitutive equations and Stress-Strain Energy Theory were identified. The final step for this project is curve fitting between experimental data (Ogden and Mooney-Rivlin hyperelastic models). New parameters were carried out for healing patch materials made of hybrid biomaterials from the hyperelastic theory. The Ogden and Mooney Rivlin trends were closely followed by the curve fit presented with a minor difference. Overall, the original Aloe vera leaves’ values were Ogden (α=1.8792, µ=0.1881 Mpa) and Mooney-Rivlin (C1=0.0713, C2=0.0304) respectively. The significance of this project is to expand the knowledge about mechanical properties of natural polymers for wound healing application instead of depending on semi-synthetic polymers. Universiti Teknologi MARA 2021 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/52961/1/52961.pdf ID52961 Mohd Nazali, Nur Nabila and Adull Manan, Nor Fazli (2021) The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan. Journal of Mechanical Engineering, 18 (3): 1. pp. 1-20. ISSN 2550 - 164X
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Analytical chemistry
Biotechnology
spellingShingle Analytical chemistry
Biotechnology
Mohd Nazali, Nur Nabila
Adull Manan, Nor Fazli
The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan
description A basic purpose of a good healing patch is to reduce the reproduction of bacteria in the wounded area with minimal effect of mechanical properties. This study focuses on the basic mechanical and biomechanical properties of the material for a healing patch application with a new composition of biodegradable ingredients by using the estimation of hyperelastic models to fit with the experimental data and the comparison between the commercial Aloe vera gels and original Aloe vera leaves. This project was started with a material selection which is gelatine and Aloe vera leaves as the main ingredient. Secondly, the specimen sets undergo a uniaxial tensile test to obtain the raw data. For numerical phases, the conventional theory of large deformation based on hyperelastic constitutive equations and Stress-Strain Energy Theory were identified. The final step for this project is curve fitting between experimental data (Ogden and Mooney-Rivlin hyperelastic models). New parameters were carried out for healing patch materials made of hybrid biomaterials from the hyperelastic theory. The Ogden and Mooney Rivlin trends were closely followed by the curve fit presented with a minor difference. Overall, the original Aloe vera leaves’ values were Ogden (α=1.8792, µ=0.1881 Mpa) and Mooney-Rivlin (C1=0.0713, C2=0.0304) respectively. The significance of this project is to expand the knowledge about mechanical properties of natural polymers for wound healing application instead of depending on semi-synthetic polymers.
format Article
author Mohd Nazali, Nur Nabila
Adull Manan, Nor Fazli
author_facet Mohd Nazali, Nur Nabila
Adull Manan, Nor Fazli
author_sort Mohd Nazali, Nur Nabila
title The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan
title_short The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan
title_full The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan
title_fullStr The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan
title_full_unstemmed The numerical analysis of hyperelastic properties in commercial and original aloe vera gels / Nur Nabila Mohd Nazali and Nor Fazli Adull Manan
title_sort numerical analysis of hyperelastic properties in commercial and original aloe vera gels / nur nabila mohd nazali and nor fazli adull manan
publisher Universiti Teknologi MARA
publishDate 2021
url https://ir.uitm.edu.my/id/eprint/52961/1/52961.pdf
https://ir.uitm.edu.my/id/eprint/52961/
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