Bioactive coating on stainless steel 316L through sol-gel method
In this work hydroxyapatite coating through sol-gel method on stainless steel 316 L was investigated. Biocompatible additives such as P2O5, Na2CO3, KH2PO4 and HA commercial powder were used for preparation of hydroxyapatite sol-gel. Corrosion behavior of the ground and passivated stainless steel was...
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my.utm.466492017-09-17T08:56:06Z http://eprints.utm.my/id/eprint/46649/ Bioactive coating on stainless steel 316L through sol-gel method Jafari, Sajjad Taheri, Mohammad Mahdi Idris, Jamaliah TA Engineering (General). Civil engineering (General) In this work hydroxyapatite coating through sol-gel method on stainless steel 316 L was investigated. Biocompatible additives such as P2O5, Na2CO3, KH2PO4 and HA commercial powder were used for preparation of hydroxyapatite sol-gel. Corrosion behavior of the ground and passivated stainless steel was evaluated. Characterization of the coated samples was performed by using SEM and XRD. The results showed that by increasing the sintering temperature, a denser structure of hydroxyapatite was obtained, and volume fraction and size of porosities decreased. Thick hydroxyapatite coatings with a thickness range of 50-70 µm free from cracks were obtained. 2012 Article PeerReviewed Jafari, Sajjad and Taheri, Mohammad Mahdi and Idris, Jamaliah (2012) Bioactive coating on stainless steel 316L through sol-gel method. Advanced Materials Research, 383-39 . pp. 3944-3948. ISSN 1022-6680 |
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TA Engineering (General). Civil engineering (General) Jafari, Sajjad Taheri, Mohammad Mahdi Idris, Jamaliah Bioactive coating on stainless steel 316L through sol-gel method |
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In this work hydroxyapatite coating through sol-gel method on stainless steel 316 L was investigated. Biocompatible additives such as P2O5, Na2CO3, KH2PO4 and HA commercial powder were used for preparation of hydroxyapatite sol-gel. Corrosion behavior of the ground and passivated stainless steel was evaluated. Characterization of the coated samples was performed by using SEM and XRD. The results showed that by increasing the sintering temperature, a denser structure of hydroxyapatite was obtained, and volume fraction and size of porosities decreased. Thick hydroxyapatite coatings with a thickness range of 50-70 µm free from cracks were obtained. |
format |
Article |
author |
Jafari, Sajjad Taheri, Mohammad Mahdi Idris, Jamaliah |
author_facet |
Jafari, Sajjad Taheri, Mohammad Mahdi Idris, Jamaliah |
author_sort |
Jafari, Sajjad |
title |
Bioactive coating on stainless steel 316L through sol-gel method |
title_short |
Bioactive coating on stainless steel 316L through sol-gel method |
title_full |
Bioactive coating on stainless steel 316L through sol-gel method |
title_fullStr |
Bioactive coating on stainless steel 316L through sol-gel method |
title_full_unstemmed |
Bioactive coating on stainless steel 316L through sol-gel method |
title_sort |
bioactive coating on stainless steel 316l through sol-gel method |
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2012 |
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http://eprints.utm.my/id/eprint/46649/ |
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