Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite
This study was carried out to introduce newly developed silicone-biocomposite materials, namely Curcuma longa-silicone biocomposite; and assess its tensile properties of using the Neo-Hookean hyperelastic constitutive equation. The specimens were prepared from the mix of Curcuma longa fiber and pure...
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Kauno Technologijos Universitetas
2022
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2-s2.0-85136950457 Zainal Abidin N.A.; Othman N.; Zulkefli A.H.; Mahmud J. Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite 2022 Medziagotyra 28 3 10.5755/j02.ms.29871 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85136950457&doi=10.5755%2fj02.ms.29871&partnerID=40&md5=21cf2546b063e96abcfca78558f11676 This study was carried out to introduce newly developed silicone-biocomposite materials, namely Curcuma longa-silicone biocomposite; and assess its tensile properties of using the Neo-Hookean hyperelastic constitutive equation. The specimens were prepared from the mix of Curcuma longa fiber and pure silicone at various fiber composition (0 wt.%, 4 wt.%, 8 wt.%, and 12 wt.%). A uniaxial tensile test was carried out by adopting the ASTM D412 testing standard. The Neo-Hookean model was employed to obtain the material constant, C1 value. Results obtained indicate that the incorporation of Curcuma longa fiber improves the stiffness of the silicone biocomposite as can be seen from the increase of the tensile modulus, while marginally decreasing its tensile strength. The material elastic constant, C1 of silicone reinforced with Curcuma longa was then predicted by using Artificial Neural Network (ANN). The regression coefficients obtained by training the neural network are satisfactory, therefore the neural network can be used for predicting the material constant, C1 of the silicone biocomposite. The prediction of ANN generates a better correlation if there are more data set and can be a good fit for predicting the unknown value. © Zainal Abidin et al. 2022. Kauno Technologijos Universitetas 13921320 English Article All Open Access; Gold Open Access |
author |
Zainal Abidin N.A.; Othman N.; Zulkefli A.H.; Mahmud J. |
spellingShingle |
Zainal Abidin N.A.; Othman N.; Zulkefli A.H.; Mahmud J. Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite |
author_facet |
Zainal Abidin N.A.; Othman N.; Zulkefli A.H.; Mahmud J. |
author_sort |
Zainal Abidin N.A.; Othman N.; Zulkefli A.H.; Mahmud J. |
title |
Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite |
title_short |
Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite |
title_full |
Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite |
title_fullStr |
Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite |
title_full_unstemmed |
Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite |
title_sort |
Quantifying and Predicting Tensile Properties of Curcuma longa-silicone Biocomposite |
publishDate |
2022 |
container_title |
Medziagotyra |
container_volume |
28 |
container_issue |
3 |
doi_str_mv |
10.5755/j02.ms.29871 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85136950457&doi=10.5755%2fj02.ms.29871&partnerID=40&md5=21cf2546b063e96abcfca78558f11676 |
description |
This study was carried out to introduce newly developed silicone-biocomposite materials, namely Curcuma longa-silicone biocomposite; and assess its tensile properties of using the Neo-Hookean hyperelastic constitutive equation. The specimens were prepared from the mix of Curcuma longa fiber and pure silicone at various fiber composition (0 wt.%, 4 wt.%, 8 wt.%, and 12 wt.%). A uniaxial tensile test was carried out by adopting the ASTM D412 testing standard. The Neo-Hookean model was employed to obtain the material constant, C1 value. Results obtained indicate that the incorporation of Curcuma longa fiber improves the stiffness of the silicone biocomposite as can be seen from the increase of the tensile modulus, while marginally decreasing its tensile strength. The material elastic constant, C1 of silicone reinforced with Curcuma longa was then predicted by using Artificial Neural Network (ANN). The regression coefficients obtained by training the neural network are satisfactory, therefore the neural network can be used for predicting the material constant, C1 of the silicone biocomposite. The prediction of ANN generates a better correlation if there are more data set and can be a good fit for predicting the unknown value. © Zainal Abidin et al. 2022. |
publisher |
Kauno Technologijos Universitetas |
issn |
13921320 |
language |
English |
format |
Article |
accesstype |
All Open Access; Gold Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677891316744192 |