Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen

Ti-6Al-4V alloy is a bioinert material with low bioactive properties, which may hamper its bonding ability with body tissues that can be overcome by coating the metal with a bioactive glass layer, 45S5 reinforced zirconia. This coating can be deposited using an electrophoretic deposition process. In...

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Main Authors: Zac, C. H., Abdul Razak, Bushroa, Sarraf, M., Rizwan, M., Jamaludin, Mohd Fadzil
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Published: Wiley-VCH Verlag 2021
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Online Access:http://eprints.um.edu.my/27871/
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spelling my.um.eprints.278712022-04-08T01:09:56Z http://eprints.um.edu.my/27871/ Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen Zac, C. H. Abdul Razak, Bushroa Sarraf, M. Rizwan, M. Jamaludin, Mohd Fadzil TA Engineering (General). Civil engineering (General) Ti-6Al-4V alloy is a bioinert material with low bioactive properties, which may hamper its bonding ability with body tissues that can be overcome by coating the metal with a bioactive glass layer, 45S5 reinforced zirconia. This coating can be deposited using an electrophoretic deposition process. In this study, a comparison is made between three types of coatings which are bioglass, pure zirconia and bioglass reinforced zirconia before and after heat treated. Mechanical evaluations using scratch tests and micro-hardness tests are conducted to evaluate the adhesion strengths and hardness properties of the coatings. The results show the presence of oxygen, and variations in the amounts of bioglass and zirconia, due to the activity of crystallization. X-ray diffraction confirms presence of all precursor elements in the coatings. The highest hardness value of 414 HV 2.942 is obtained for the sintered bioglass-zirconia composite coating, as compared to the hardness of bare titanium alloy of 266 HV 2.942. The highest adhesion strength of 1929 mN is also obtained for the bioglass-zirconia composite coating. These results show excellent performance for sintered bioglass-zirconia composite coating, making it a potential coating material for biomedical implants. Wiley-VCH Verlag 2021-09 Article PeerReviewed Zac, C. H. and Abdul Razak, Bushroa and Sarraf, M. and Rizwan, M. and Jamaludin, Mohd Fadzil (2021) Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen. Materialwissenschaft und Werkstofftechnik, 52 (9). pp. 952-964. ISSN 0933-5137, DOI https://doi.org/10.1002/mawe.202000091 <https://doi.org/10.1002/mawe.202000091>. 10.1002/mawe.202000091
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Zac, C. H.
Abdul Razak, Bushroa
Sarraf, M.
Rizwan, M.
Jamaludin, Mohd Fadzil
Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen
description Ti-6Al-4V alloy is a bioinert material with low bioactive properties, which may hamper its bonding ability with body tissues that can be overcome by coating the metal with a bioactive glass layer, 45S5 reinforced zirconia. This coating can be deposited using an electrophoretic deposition process. In this study, a comparison is made between three types of coatings which are bioglass, pure zirconia and bioglass reinforced zirconia before and after heat treated. Mechanical evaluations using scratch tests and micro-hardness tests are conducted to evaluate the adhesion strengths and hardness properties of the coatings. The results show the presence of oxygen, and variations in the amounts of bioglass and zirconia, due to the activity of crystallization. X-ray diffraction confirms presence of all precursor elements in the coatings. The highest hardness value of 414 HV 2.942 is obtained for the sintered bioglass-zirconia composite coating, as compared to the hardness of bare titanium alloy of 266 HV 2.942. The highest adhesion strength of 1929 mN is also obtained for the bioglass-zirconia composite coating. These results show excellent performance for sintered bioglass-zirconia composite coating, making it a potential coating material for biomedical implants.
format Article
author Zac, C. H.
Abdul Razak, Bushroa
Sarraf, M.
Rizwan, M.
Jamaludin, Mohd Fadzil
author_facet Zac, C. H.
Abdul Razak, Bushroa
Sarraf, M.
Rizwan, M.
Jamaludin, Mohd Fadzil
author_sort Zac, C. H.
title Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen
title_short Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen
title_full Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen
title_fullStr Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen
title_full_unstemmed Electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationElektrophoretische Abscheidung von mit Bioglas verstarktem Zirkon fur biomedizinische Anwendungen
title_sort electrophoretic deposition of bioglass reinforced zirconia for biomedical applicationelektrophoretische abscheidung von mit bioglas verstarktem zirkon fur biomedizinische anwendungen
publisher Wiley-VCH Verlag
publishDate 2021
url http://eprints.um.edu.my/27871/
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