Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites

The thermal conductivity of the raw and stearic acid treated calcium carbonate (CaCO3) from clam (Polymesoda bengalensis) shell powder infused in unsaturated polyester matrix has been measured. Eight different mean diameter sizes of clam shell filler were infused into unsaturated polyester (UPE) ma...

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Main Authors: Mahshuri, Yusof, Amalina, Muhammad Afifi, Nur Tahirah, Razali, Marini, Sawawi, Abdul Razak, Abdul Karim
Format: Article
Language:English
Published: Science Publishing Corporation Inc. 2018
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Online Access:http://ir.unimas.my/id/eprint/22045/1/Mahshuri%20Yusof.pdf
http://ir.unimas.my/id/eprint/22045/
http://www.sciencepubco.com/index.php/ijet/article/view/19023
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Institution: Universiti Malaysia Sarawak
Language: English
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spelling my.unimas.ir.220452021-04-27T08:20:05Z http://ir.unimas.my/id/eprint/22045/ Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites Mahshuri, Yusof Amalina, Muhammad Afifi Nur Tahirah, Razali Marini, Sawawi Abdul Razak, Abdul Karim TD Environmental technology. Sanitary engineering The thermal conductivity of the raw and stearic acid treated calcium carbonate (CaCO3) from clam (Polymesoda bengalensis) shell powder infused in unsaturated polyester matrix has been measured. Eight different mean diameter sizes of clam shell filler were infused into unsaturated polyester (UPE) matrix. Thermal conductivity of neat UPE sample and when embedded with raw and stearic acid treated CaCO3 filler with different mean diameter sizes and filler loadings were measured according to ASTM E1225-99. The result showed that UPE matrix composites with untreated clam shell produced higher thermal conductivity than treated clam shell. At constant filler content, the thermal conductivity of UPE/CaCO3 composites was increased gradually as the filler size was decreased. The higher the filler content, the higher the thermal conductivity of the composites. Therefore, the inclusion of higher filler loading with finer filler size of seafood waste from clam shell can improve the performance of polymer matrix composites as a heat conducto Science Publishing Corporation Inc. 2018 Article PeerReviewed text en http://ir.unimas.my/id/eprint/22045/1/Mahshuri%20Yusof.pdf Mahshuri, Yusof and Amalina, Muhammad Afifi and Nur Tahirah, Razali and Marini, Sawawi and Abdul Razak, Abdul Karim (2018) Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites. International Journal of Engineering and Technology (UAE), 7 (3.18). pp. 101-105. ISSN 2227-524X http://www.sciencepubco.com/index.php/ijet/article/view/19023 DOI: https://doi.org/10.14419/ijet.v7i3.18.19023
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic TD Environmental technology. Sanitary engineering
spellingShingle TD Environmental technology. Sanitary engineering
Mahshuri, Yusof
Amalina, Muhammad Afifi
Nur Tahirah, Razali
Marini, Sawawi
Abdul Razak, Abdul Karim
Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites
description The thermal conductivity of the raw and stearic acid treated calcium carbonate (CaCO3) from clam (Polymesoda bengalensis) shell powder infused in unsaturated polyester matrix has been measured. Eight different mean diameter sizes of clam shell filler were infused into unsaturated polyester (UPE) matrix. Thermal conductivity of neat UPE sample and when embedded with raw and stearic acid treated CaCO3 filler with different mean diameter sizes and filler loadings were measured according to ASTM E1225-99. The result showed that UPE matrix composites with untreated clam shell produced higher thermal conductivity than treated clam shell. At constant filler content, the thermal conductivity of UPE/CaCO3 composites was increased gradually as the filler size was decreased. The higher the filler content, the higher the thermal conductivity of the composites. Therefore, the inclusion of higher filler loading with finer filler size of seafood waste from clam shell can improve the performance of polymer matrix composites as a heat conducto
format Article
author Mahshuri, Yusof
Amalina, Muhammad Afifi
Nur Tahirah, Razali
Marini, Sawawi
Abdul Razak, Abdul Karim
author_facet Mahshuri, Yusof
Amalina, Muhammad Afifi
Nur Tahirah, Razali
Marini, Sawawi
Abdul Razak, Abdul Karim
author_sort Mahshuri, Yusof
title Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites
title_short Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites
title_full Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites
title_fullStr Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites
title_full_unstemmed Calcium Carbonate from Clam Shell as a Thermal Conductor in Particulate Filled Polymer Matrix Composites
title_sort calcium carbonate from clam shell as a thermal conductor in particulate filled polymer matrix composites
publisher Science Publishing Corporation Inc.
publishDate 2018
url http://ir.unimas.my/id/eprint/22045/1/Mahshuri%20Yusof.pdf
http://ir.unimas.my/id/eprint/22045/
http://www.sciencepubco.com/index.php/ijet/article/view/19023
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