Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route
In the development of Ti-based alloy bio-implant material, Titanium Hydride (TiH 2 ) which is commonly used as a pore former agent has become one of the new approaches of starting material via powder metallurgy proc...
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Penerbit Universiti Teknikal Malaysia Melaka
2018
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2-s2.0-85062501315 Hosnie S.M.; Yahaya M.; Haris N.A.; Ismail M.H. Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route 2018 Journal of Advanced Manufacturing Technology 12 2 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85062501315&partnerID=40&md5=819eed96c46ff1bcbaf9b570438ca821 In the development of Ti-based alloy bio-implant material, Titanium Hydride (TiH 2 ) which is commonly used as a pore former agent has become one of the new approaches of starting material via powder metallurgy processing route with the aim of low-cost production in the fabrication of Betatyped Titanium Niobium (β-TiNb) alloy. However, the thermal behaviour of TiNb alloy by TiH 2 substitution is still not well understood. Thus, in the present work the compacted of Ti and Nb mixture was subjected to thermal analysis via differential thermal analysis (DTA) and dilatometry to evaluate thermal events existed during sintering process. It was found that the overall reaction had undergone four-step processes; the first two steps were subjected to the dehydrogenation process whereas the last two steps corresponded to the formation of TiNb alloy. In addition, the β phase of TiNb exhibited better appearance at 1200°C sintered temperature which was supported by X-ray Diffraction (XRD) analysis. © 2018, Penerbit Universiti Teknikal Malaysia Melaka. Penerbit Universiti Teknikal Malaysia Melaka 19853157 English Article |
author |
Hosnie S.M.; Yahaya M.; Haris N.A.; Ismail M.H. |
spellingShingle |
Hosnie S.M.; Yahaya M.; Haris N.A.; Ismail M.H. Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route |
author_facet |
Hosnie S.M.; Yahaya M.; Haris N.A.; Ismail M.H. |
author_sort |
Hosnie S.M.; Yahaya M.; Haris N.A.; Ismail M.H. |
title |
Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route |
title_short |
Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route |
title_full |
Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route |
title_fullStr |
Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route |
title_full_unstemmed |
Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route |
title_sort |
Thermal analysis and microstructural study of porous β-TiNb incorporated with Tih 2 powder via low-cost processing route |
publishDate |
2018 |
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Journal of Advanced Manufacturing Technology |
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12 |
container_issue |
2 |
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url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85062501315&partnerID=40&md5=819eed96c46ff1bcbaf9b570438ca821 |
description |
In the development of Ti-based alloy bio-implant material, Titanium Hydride (TiH 2 ) which is commonly used as a pore former agent has become one of the new approaches of starting material via powder metallurgy processing route with the aim of low-cost production in the fabrication of Betatyped Titanium Niobium (β-TiNb) alloy. However, the thermal behaviour of TiNb alloy by TiH 2 substitution is still not well understood. Thus, in the present work the compacted of Ti and Nb mixture was subjected to thermal analysis via differential thermal analysis (DTA) and dilatometry to evaluate thermal events existed during sintering process. It was found that the overall reaction had undergone four-step processes; the first two steps were subjected to the dehydrogenation process whereas the last two steps corresponded to the formation of TiNb alloy. In addition, the β phase of TiNb exhibited better appearance at 1200°C sintered temperature which was supported by X-ray Diffraction (XRD) analysis. © 2018, Penerbit Universiti Teknikal Malaysia Melaka. |
publisher |
Penerbit Universiti Teknikal Malaysia Melaka |
issn |
19853157 |
language |
English |
format |
Article |
accesstype |
|
record_format |
scopus |
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Scopus |
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1809677907650412544 |