Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites
The present research study deals with the preparation of 6-layered functionally graded (FG) metal-ceramic composite materials through powder metallurgy technique. Using a cylindrical die-punch set made of steel, the nickel-alumina (Ni-Al2O3) graded composite structure was fabricated. The samples con...
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my.umk.eprints.88282022-05-23T11:08:45Z http://discol.umk.edu.my/id/eprint/8828/ Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites Abdul Latiff, Muhammad Ihsan Muhammad Nuruzzaman, Dewan Basri, Shahnor Ismail, Noor Mazni Jamaludin, Siti Nur Sakinah Kamaruzaman, F. F. The present research study deals with the preparation of 6-layered functionally graded (FG) metal-ceramic composite materials through powder metallurgy technique. Using a cylindrical die-punch set made of steel, the nickel-alumina (Ni-Al2O3) graded composite structure was fabricated. The samples consist of four gradual inter layers of varied nickel composition (80wt.%, 60wt.%, 40wt.%, 20wt.%) sandwiched with pure Ni and Al2O3 powders at the ends (100wt.% and 0wt.% nickel) were fabricated under 30 ton compaction load using a hydraulic press. After that, two-step sintering was carried out at sintering temperature 1200ºC and soaking time 3 hours was maintained in a tube furnace. The properties of the prepared samples were characterized by radial shrinkage, optical microscopy and hardness testing. Results showed that larger shrinkage occurred within the ceramic phase which proves that more porosities were eliminated in the ceramic rich layers. From the microstructural analysis, it was observed that alumina particles are almost uniformly distributed in nickel matrix, so as nickel particles in the ceramic matrix of alumina-dominant layers. From interfacial analyses, it was observed that a smooth transition in microstructure from one layer to the next confirms a good interfacial solid state bonding between metal-ceramic constituents and good compaction process. On the other hand, microhardness test results suggest that there might be increasing percentage of porosities in the graded structure as the ceramic content rises. SCOPUS 2018 Conference or Workshop Item PeerReviewed text en http://discol.umk.edu.my/id/eprint/8828/1/Latiff_2018_IOP_Conf._Ser.__Mater._Sci._Eng._342_012063.pdf Abdul Latiff, Muhammad Ihsan and Muhammad Nuruzzaman, Dewan and Basri, Shahnor and Ismail, Noor Mazni and Jamaludin, Siti Nur Sakinah and Kamaruzaman, F. F. (2018) Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites. In: IOP Conference Series: Materials Science and Engineering. https://iopscience.iop.org/article/10.1088/1757-899X/342/1/012063 |
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The present research study deals with the preparation of 6-layered functionally graded (FG) metal-ceramic composite materials through powder metallurgy technique. Using
a cylindrical die-punch set made of steel, the nickel-alumina (Ni-Al2O3) graded composite structure was fabricated. The samples consist of four gradual inter layers of varied nickel composition (80wt.%, 60wt.%, 40wt.%, 20wt.%) sandwiched with pure Ni and Al2O3 powders
at the ends (100wt.% and 0wt.% nickel) were fabricated under 30 ton compaction load using a hydraulic press. After that, two-step sintering was carried out at sintering temperature 1200ºC and soaking time 3 hours was maintained in a tube furnace. The properties of the prepared samples were characterized by radial shrinkage, optical microscopy and hardness testing. Results showed that larger shrinkage occurred within the ceramic phase which proves that
more porosities were eliminated in the ceramic rich layers. From the microstructural analysis, it was observed that alumina particles are almost uniformly distributed in nickel matrix, so as nickel particles in the ceramic matrix of alumina-dominant layers. From interfacial analyses, it
was observed that a smooth transition in microstructure from one layer to the next confirms a good interfacial solid state bonding between metal-ceramic constituents and good compaction process. On the other hand, microhardness test results suggest that there might be increasing
percentage of porosities in the graded structure as the ceramic content rises. |
format |
Conference or Workshop Item |
author |
Abdul Latiff, Muhammad Ihsan Muhammad Nuruzzaman, Dewan Basri, Shahnor Ismail, Noor Mazni Jamaludin, Siti Nur Sakinah Kamaruzaman, F. F. |
spellingShingle |
Abdul Latiff, Muhammad Ihsan Muhammad Nuruzzaman, Dewan Basri, Shahnor Ismail, Noor Mazni Jamaludin, Siti Nur Sakinah Kamaruzaman, F. F. Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites |
author_facet |
Abdul Latiff, Muhammad Ihsan Muhammad Nuruzzaman, Dewan Basri, Shahnor Ismail, Noor Mazni Jamaludin, Siti Nur Sakinah Kamaruzaman, F. F. |
author_sort |
Abdul Latiff, Muhammad Ihsan |
title |
Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites |
title_short |
Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites |
title_full |
Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites |
title_fullStr |
Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites |
title_full_unstemmed |
Preparation and characterization of 6-layered functionally graded nickel-alumina (Ni-Al2O3) composites |
title_sort |
preparation and characterization of 6-layered functionally graded nickel-alumina (ni-al2o3) composites |
publisher |
SCOPUS |
publishDate |
2018 |
url |
http://discol.umk.edu.my/id/eprint/8828/1/Latiff_2018_IOP_Conf._Ser.__Mater._Sci._Eng._342_012063.pdf http://discol.umk.edu.my/id/eprint/8828/ https://iopscience.iop.org/article/10.1088/1757-899X/342/1/012063 |
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