Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity

Titanium alloys, especially titanium-niobium alloy have been reported as a potential biomaterial with good biocompatibility and non-toxicity. However, there is a lack of studies in alkaline surface treatment of new beta titanium alloy fabricated by vacuum arc melting (VAM) and powder metallurgy (PM)...

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Published in:Key Engineering Materials
Main Author: Basry N.A.A.; Zuhailawati H.; Shariff K.A.; Anis A.L.; Darham W.
Format: Book chapter
Language:English
Published: Trans Tech Publications Ltd 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85202352143&doi=10.4028%2fp-Qk8stz&partnerID=40&md5=5218b8a5e96bdc8d2e601dbf23ed0f73
id 2-s2.0-85202352143
spelling 2-s2.0-85202352143
Basry N.A.A.; Zuhailawati H.; Shariff K.A.; Anis A.L.; Darham W.
Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity
2023
Key Engineering Materials
965

10.4028/p-Qk8stz
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85202352143&doi=10.4028%2fp-Qk8stz&partnerID=40&md5=5218b8a5e96bdc8d2e601dbf23ed0f73
Titanium alloys, especially titanium-niobium alloy have been reported as a potential biomaterial with good biocompatibility and non-toxicity. However, there is a lack of studies in alkaline surface treatment of new beta titanium alloy fabricated by vacuum arc melting (VAM) and powder metallurgy (PM) technique with high addition of niobium percentage. The purpose of this research was to examine the feasibility of surface modification on new beta Ti-40wt% Nb alloy in sodium hydroxide solution in order to form bioactive alkaline titanate layer. The characterization involved in this study is X-ray diffraction analysis (XRD), scanning electron microscope (SEM), microhardness, density measurement and optical microscope (OM). Development of amorphous alkaline titanate layer consisted of titanium hydrate, sodium titanate and oxide mixture of titanium oxide, niobium, niobium oxide were revealed by XRD. SEM shows titanate hydrogel layer form on Ti alloy PM thicker than on Ti alloy VAM. Microhardness and density measurement for Ti alloy VAM is greater than Ti alloy PM. OM shows porous surface on Ti alloy PM compare to VAM. This research suggests that the formation of sodium titanate layer on the surface of Ti-Nb alloy enhance bioactivity with better osteointegration and present higher formation of apatite which is crucial for the desired biomedical implant. © 2023 Trans Tech Publications Ltd, All Rights Reserved.
Trans Tech Publications Ltd
10139826
English
Book chapter

author Basry N.A.A.; Zuhailawati H.; Shariff K.A.; Anis A.L.; Darham W.
spellingShingle Basry N.A.A.; Zuhailawati H.; Shariff K.A.; Anis A.L.; Darham W.
Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity
author_facet Basry N.A.A.; Zuhailawati H.; Shariff K.A.; Anis A.L.; Darham W.
author_sort Basry N.A.A.; Zuhailawati H.; Shariff K.A.; Anis A.L.; Darham W.
title Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity
title_short Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity
title_full Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity
title_fullStr Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity
title_full_unstemmed Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity
title_sort Surface Modification of Ti-Nb Alloy in Alkaline Solution to Enhance Bioactivity
publishDate 2023
container_title Key Engineering Materials
container_volume 965
container_issue
doi_str_mv 10.4028/p-Qk8stz
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85202352143&doi=10.4028%2fp-Qk8stz&partnerID=40&md5=5218b8a5e96bdc8d2e601dbf23ed0f73
description Titanium alloys, especially titanium-niobium alloy have been reported as a potential biomaterial with good biocompatibility and non-toxicity. However, there is a lack of studies in alkaline surface treatment of new beta titanium alloy fabricated by vacuum arc melting (VAM) and powder metallurgy (PM) technique with high addition of niobium percentage. The purpose of this research was to examine the feasibility of surface modification on new beta Ti-40wt% Nb alloy in sodium hydroxide solution in order to form bioactive alkaline titanate layer. The characterization involved in this study is X-ray diffraction analysis (XRD), scanning electron microscope (SEM), microhardness, density measurement and optical microscope (OM). Development of amorphous alkaline titanate layer consisted of titanium hydrate, sodium titanate and oxide mixture of titanium oxide, niobium, niobium oxide were revealed by XRD. SEM shows titanate hydrogel layer form on Ti alloy PM thicker than on Ti alloy VAM. Microhardness and density measurement for Ti alloy VAM is greater than Ti alloy PM. OM shows porous surface on Ti alloy PM compare to VAM. This research suggests that the formation of sodium titanate layer on the surface of Ti-Nb alloy enhance bioactivity with better osteointegration and present higher formation of apatite which is crucial for the desired biomedical implant. © 2023 Trans Tech Publications Ltd, All Rights Reserved.
publisher Trans Tech Publications Ltd
issn 10139826
language English
format Book chapter
accesstype
record_format scopus
collection Scopus
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