THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING
Chicken eggshells are a major waste product in almost every country due to their extensive use as eggs are used in millions of household and industries. As a result, managing these waste products has become challenging as they not only occupy space in landfills but also release greenhouse gasses dec...
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Penerbit UTM Press
2023
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2-s2.0-85213295333 Azmi N.N.; Poquita G.M.Y.; Noor N.M.M.; Hisham M.H.A.H. THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING 2023 Jurnal Mekanikal 46 10.11113/jm.v46.485 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85213295333&doi=10.11113%2fjm.v46.485&partnerID=40&md5=cb25a9c77825e98c9a25964e3f7d4f63 Chicken eggshells are a major waste product in almost every country due to their extensive use as eggs are used in millions of household and industries. As a result, managing these waste products has become challenging as they not only occupy space in landfills but also release greenhouse gasses decomposition. In recent years efforts have been made to develop new materials using sustainable sources such as biocomposites. This study aims to fabricate eggshell silicone biocomposites and examine its behaviour under uniaxial tensile loading. This study consisted of two phases: fabrication of eggshell silicone biocomposite and mechanical testing under uniaxial tensile with 50 kN. During the first phase; eggshells were washed, sterilized, and crushed into powder form. Subsequently, they were mixed with silicone at different eggshell powder content (e.g., 5, 10 and 15 wt.%). In the second phase, the specimens underwent uniaxial tensile strength. The ultimate tensile strength increases from 0.43772 MPa to 0.47331 MPa from 5 wt.% to 10 wt.%. However, it decreases to 0.42535 MPa when reaches 15 wt.% eggshell weight. This study is in line with previous study that uses Arengga Pinnata silicone biocomposite. © 2023 Penerbit UTM Press. All rights reserved. Penerbit UTM Press 22893873 English Article All Open Access; Bronze Open Access |
author |
Azmi N.N.; Poquita G.M.Y.; Noor N.M.M.; Hisham M.H.A.H. |
spellingShingle |
Azmi N.N.; Poquita G.M.Y.; Noor N.M.M.; Hisham M.H.A.H. THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING |
author_facet |
Azmi N.N.; Poquita G.M.Y.; Noor N.M.M.; Hisham M.H.A.H. |
author_sort |
Azmi N.N.; Poquita G.M.Y.; Noor N.M.M.; Hisham M.H.A.H. |
title |
THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING |
title_short |
THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING |
title_full |
THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING |
title_fullStr |
THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING |
title_full_unstemmed |
THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING |
title_sort |
THE EFFECTS OF DIFFERENT EGGSHELL-SILICONE BIOCOMPOSITE UNDER UNIAXIAL TENSILE LOADING |
publishDate |
2023 |
container_title |
Jurnal Mekanikal |
container_volume |
46 |
container_issue |
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doi_str_mv |
10.11113/jm.v46.485 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85213295333&doi=10.11113%2fjm.v46.485&partnerID=40&md5=cb25a9c77825e98c9a25964e3f7d4f63 |
description |
Chicken eggshells are a major waste product in almost every country due to their extensive use as eggs are used in millions of household and industries. As a result, managing these waste products has become challenging as they not only occupy space in landfills but also release greenhouse gasses decomposition. In recent years efforts have been made to develop new materials using sustainable sources such as biocomposites. This study aims to fabricate eggshell silicone biocomposites and examine its behaviour under uniaxial tensile loading. This study consisted of two phases: fabrication of eggshell silicone biocomposite and mechanical testing under uniaxial tensile with 50 kN. During the first phase; eggshells were washed, sterilized, and crushed into powder form. Subsequently, they were mixed with silicone at different eggshell powder content (e.g., 5, 10 and 15 wt.%). In the second phase, the specimens underwent uniaxial tensile strength. The ultimate tensile strength increases from 0.43772 MPa to 0.47331 MPa from 5 wt.% to 10 wt.%. However, it decreases to 0.42535 MPa when reaches 15 wt.% eggshell weight. This study is in line with previous study that uses Arengga Pinnata silicone biocomposite. © 2023 Penerbit UTM Press. All rights reserved. |
publisher |
Penerbit UTM Press |
issn |
22893873 |
language |
English |
format |
Article |
accesstype |
All Open Access; Bronze Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1823296158380851200 |