Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach

Hevea brasiliensis wood becomes residue at plantations in Malaysia. In this study, these residues were reinforced into silicone rubber to produce a new soft biocomposite (Hevea brasiliensis-silicone biocomposite). The newly introduced soft biocomposite has potential for use in cushioning and sealing...

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Published in:BioResources
Main Author: Haris N.F.N.; Yahaya M.A.; Mahmud J.
Format: Article
Language:English
Published: North Carolina State University 2022
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85137566234&doi=10.15376%2fbiores.17.3.4623-4637&partnerID=40&md5=8f2c1d097521f596ff471f1bdba76fb1
id 2-s2.0-85137566234
spelling 2-s2.0-85137566234
Haris N.F.N.; Yahaya M.A.; Mahmud J.
Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach
2022
BioResources
17
3
10.15376/biores.17.3.4623-4637
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85137566234&doi=10.15376%2fbiores.17.3.4623-4637&partnerID=40&md5=8f2c1d097521f596ff471f1bdba76fb1
Hevea brasiliensis wood becomes residue at plantations in Malaysia. In this study, these residues were reinforced into silicone rubber to produce a new soft biocomposite (Hevea brasiliensis-silicone biocomposite). The newly introduced soft biocomposite has potential for use in cushioning and sealing applications. The specimens were prepared with five different compositions (0 wt%, 4 wt%, 8 wt%, 12 wt%, and 16 wt% fiber content). Tensile tests were conducted according to ASTM D412 (2008) to assess the mechanical properties. Morphological characteristics were analyzed from the fractured surface of specimens. Stress-stretch data was used to quantify the non-linear tensile behavior, which was based on Neo-Hookean, Mooney-Rivlin, and Ogden hyperelastic constitutive equations. An increase in fiber content improved the modulus of silicone rubber. However, it reduced the flexibility and elastic properties of the silicone rubber biocomposite. The increasing material constant values supported these findings. The hyperelastic models accurately represented the behavior of the Hevea brasiliensis-silicone biocomposite. This study contributes knowledge towards a better understanding of the mechanical behavior of Hevea brasiliensis-silicone biocomposites. © 2022, North Carolina State University. All rights reserved.
North Carolina State University
19302126
English
Article
All Open Access; Gold Open Access
author Haris N.F.N.; Yahaya M.A.; Mahmud J.
spellingShingle Haris N.F.N.; Yahaya M.A.; Mahmud J.
Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach
author_facet Haris N.F.N.; Yahaya M.A.; Mahmud J.
author_sort Haris N.F.N.; Yahaya M.A.; Mahmud J.
title Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach
title_short Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach
title_full Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach
title_fullStr Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach
title_full_unstemmed Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach
title_sort Tensile Properties of Silicone Biocomposite Reinforced with Waste Material (Hevea brasiliensis Sawdust): Experimental and Numerical Approach
publishDate 2022
container_title BioResources
container_volume 17
container_issue 3
doi_str_mv 10.15376/biores.17.3.4623-4637
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85137566234&doi=10.15376%2fbiores.17.3.4623-4637&partnerID=40&md5=8f2c1d097521f596ff471f1bdba76fb1
description Hevea brasiliensis wood becomes residue at plantations in Malaysia. In this study, these residues were reinforced into silicone rubber to produce a new soft biocomposite (Hevea brasiliensis-silicone biocomposite). The newly introduced soft biocomposite has potential for use in cushioning and sealing applications. The specimens were prepared with five different compositions (0 wt%, 4 wt%, 8 wt%, 12 wt%, and 16 wt% fiber content). Tensile tests were conducted according to ASTM D412 (2008) to assess the mechanical properties. Morphological characteristics were analyzed from the fractured surface of specimens. Stress-stretch data was used to quantify the non-linear tensile behavior, which was based on Neo-Hookean, Mooney-Rivlin, and Ogden hyperelastic constitutive equations. An increase in fiber content improved the modulus of silicone rubber. However, it reduced the flexibility and elastic properties of the silicone rubber biocomposite. The increasing material constant values supported these findings. The hyperelastic models accurately represented the behavior of the Hevea brasiliensis-silicone biocomposite. This study contributes knowledge towards a better understanding of the mechanical behavior of Hevea brasiliensis-silicone biocomposites. © 2022, North Carolina State University. All rights reserved.
publisher North Carolina State University
issn 19302126
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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