The effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites

The effect sintering parameters and various amounts of additives on the TiO2-HA-CaSiO3 composites was investigated this study. TiO2/CaSiO3/HA composites were prepared and characterized by means of physical and mechanical properties. The addition of TiO2 and HA to wollastonite was studied by means of...

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Main Authors: Dinesh R., Meenaloshini S., Sankar U.
Other Authors: 56740614600
Format: Article
Published: Blue Eyes Intelligence Engineering and Sciences Publication 2023
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author Dinesh R.
Meenaloshini S.
Sankar U.
author2 56740614600
author_facet 56740614600
Dinesh R.
Meenaloshini S.
Sankar U.
author_sort Dinesh R.
building UNITEN Library
collection Institutional Repository
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
continent Asia
country Malaysia
description The effect sintering parameters and various amounts of additives on the TiO2-HA-CaSiO3 composites was investigated this study. TiO2/CaSiO3/HA composites were prepared and characterized by means of physical and mechanical properties. The addition of TiO2 and HA to wollastonite was studied by means of bulk density and Vickers Hardness. The wollastonite composites containing TiO2 (10-30 wt%) and HA (20-40 wt%) were sintered between 1230-1270�C, with a ramp rate of 10�C/min and a holding time of 1,1.5 and 2 hours. The results indicate that a higher sintering temperature played a significant part in enhancing the physical and mechanical properties as compared to results shown by pure wollastonite, especially for composites containing higher TiO2 (25-30wt%) and lower HA (20-25wt%). � BEIESP.
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spelling my.uniten.dspace-246772023-05-29T15:25:47Z The effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites Dinesh R. Meenaloshini S. Sankar U. 56740614600 48561725600 57188558332 The effect sintering parameters and various amounts of additives on the TiO2-HA-CaSiO3 composites was investigated this study. TiO2/CaSiO3/HA composites were prepared and characterized by means of physical and mechanical properties. The addition of TiO2 and HA to wollastonite was studied by means of bulk density and Vickers Hardness. The wollastonite composites containing TiO2 (10-30 wt%) and HA (20-40 wt%) were sintered between 1230-1270�C, with a ramp rate of 10�C/min and a holding time of 1,1.5 and 2 hours. The results indicate that a higher sintering temperature played a significant part in enhancing the physical and mechanical properties as compared to results shown by pure wollastonite, especially for composites containing higher TiO2 (25-30wt%) and lower HA (20-25wt%). � BEIESP. Final 2023-05-29T07:25:47Z 2023-05-29T07:25:47Z 2019 Article 2-s2.0-85067846524 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85067846524&partnerID=40&md5=0bcc8592394b94040f26bf7c348124df https://irepository.uniten.edu.my/handle/123456789/24677 8 7 259 261 Blue Eyes Intelligence Engineering and Sciences Publication Scopus
spellingShingle Dinesh R.
Meenaloshini S.
Sankar U.
The effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites
title The effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites
title_full The effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites
title_fullStr The effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites
title_full_unstemmed The effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites
title_short The effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites
title_sort effect of holding time on the mechanical and physical properties of titania-wollastonite-hydroxyapatite composites
url_provider http://dspace.uniten.edu.my/