Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting

Functionally graded material (FGM) is a material that has varying composition, porosity and microstructure. Such material is created to achieve a specified function. As for this research, an Aluminium based FGM was fabricated using infiltration-casting method whereby graded NaCl act as the filter an...

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Published in:International Journal of Engineering and Technology(UAE)
Main Author: Azizan M.A.; Salleh N.A.M.; Ismail M.H.; Natarajan V.D.
Format: Article
Language:English
Published: Science Publishing Corporation Inc 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85055486757&partnerID=40&md5=bee0b7101976a84b666468d4f23ae523
id 2-s2.0-85055486757
spelling 2-s2.0-85055486757
Azizan M.A.; Salleh N.A.M.; Ismail M.H.; Natarajan V.D.
Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting
2018
International Journal of Engineering and Technology(UAE)
7
4

https://www.scopus.com/inward/record.uri?eid=2-s2.0-85055486757&partnerID=40&md5=bee0b7101976a84b666468d4f23ae523
Functionally graded material (FGM) is a material that has varying composition, porosity and microstructure. Such material is created to achieve a specified function. As for this research, an Aluminium based FGM was fabricated using infiltration-casting method whereby graded NaCl act as the filter and space holder material. The NaCl grain is graded into 2, 3 and 4mm in size. The results showed that the porosity of the Functionally Graded Open Cell Aluminium Foam (FGOCAF) fabricated using infiltration process is highly dependent on the sizes of NaCl grains used. By increasing the size of NaCl grain in infiltration casting method, significantly increase the porosity of the FGOCAF. It can be concluded that the NaCl grain plays an important role to define the functionality-graded structure of the final product whereby the product will show layers of porosity inside it. © 2018 Authors.
Science Publishing Corporation Inc
2227524X
English
Article

author Azizan M.A.; Salleh N.A.M.; Ismail M.H.; Natarajan V.D.
spellingShingle Azizan M.A.; Salleh N.A.M.; Ismail M.H.; Natarajan V.D.
Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting
author_facet Azizan M.A.; Salleh N.A.M.; Ismail M.H.; Natarajan V.D.
author_sort Azizan M.A.; Salleh N.A.M.; Ismail M.H.; Natarajan V.D.
title Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting
title_short Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting
title_full Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting
title_fullStr Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting
title_full_unstemmed Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting
title_sort Fabrication of functionally graded open-cell Aluminium foam using Graded NaCl in infiltration casting
publishDate 2018
container_title International Journal of Engineering and Technology(UAE)
container_volume 7
container_issue 4
doi_str_mv
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85055486757&partnerID=40&md5=bee0b7101976a84b666468d4f23ae523
description Functionally graded material (FGM) is a material that has varying composition, porosity and microstructure. Such material is created to achieve a specified function. As for this research, an Aluminium based FGM was fabricated using infiltration-casting method whereby graded NaCl act as the filter and space holder material. The NaCl grain is graded into 2, 3 and 4mm in size. The results showed that the porosity of the Functionally Graded Open Cell Aluminium Foam (FGOCAF) fabricated using infiltration process is highly dependent on the sizes of NaCl grains used. By increasing the size of NaCl grain in infiltration casting method, significantly increase the porosity of the FGOCAF. It can be concluded that the NaCl grain plays an important role to define the functionality-graded structure of the final product whereby the product will show layers of porosity inside it. © 2018 Authors.
publisher Science Publishing Corporation Inc
issn 2227524X
language English
format Article
accesstype
record_format scopus
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