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논문 기본 정보

자료유형
학술저널
저자정보
M. J. Shivaram (National Institute of Technology Karnataka) Shashi Bhushan Arya (National Institute of Technology Karnataka) Jagannath Nayak (National Institute of Technology Karnataka) Bharat B. Panigrahi (Indian Institute of Technology Hyderabad)
저널정보
대한금속·재료학회 Metals and Materials International Metals and Materials International Vol.28 No.3
발행연도
2022.3
수록면
722 - 732 (11page)
DOI
10.1007/s12540-020-00915-2

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In this study, antibacterial Ag element added to synthesis of porous Ti?20Nb?5Ag (wt%) alloy using powder metallurgy spaceholder route. The microstructural, mechanical property, surface bioactivity and cytotoxicity behavior of porous Ti?20Nb?5Ag alloy have been investigated. The developed porous alloy obtained the porosities ranging from 22.5 to 68%. The poroussample having a porosity of about 43% is found to be in the optimum condition, which possess a modulus of about 5.8 GPawith an excellent compressive strength about 205 MPa. XRD result shows that the formation of small amount of α-Ti, β-Ti,along with α ? martensite and Ti2Agare key phase constituents of sintered porous Ti?20Nb?5Ag alloys. The compressionstrength and elastic modulus of the sintered alloys were showed that decreased with increase of porosity. Surface bioactivityresult revealed that the significant formation of hydroxyapatite on the alkali-heat treated (5 M NaOH) porous Ti?20Nb?5Agalloy which is found after the in vitro test in SBF. Further, the cell viability test was conducted on as-synthesized porousTi?20Nb?5Ag alloy for 1, 4, and 7 days using MG-63 human osteoblast cells and result shows an excellent cell proliferation,and the cytotoxicity test confirms the non-toxic nature of the porous alloy which is very much suitable for implant application.

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