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Microstructure, Mechanical Properties, and Corrosion Resistance of Ti-6Mo-6Nb-xSn Alloys for Biomedical Application
Galih Senopati, Cahya Sutowo, Yudi N Thaha, Fendy Rokhmanto, Bambang Suharno

Universitas Indonesia


Abstract

Ti-6Al-4V alloy have been used widely for biomedical application, but its elastic modulus is still higher compared with human bone. Moreover, it contains V and Al that have been reported as toxic element. In this study new beta type Ti-6Mo-6Nb-xSn (0, 4, 8 wt.%) have been developed. The aim of this study was to evaluate the Sn addition on microstructural transformation, mechanical behaviour, and corrosion resistance of Ti-6mo-6Nb-xSn alloys. The Ti-6Mo-6Nb-xSn alloys produced by arc re-melting process and the obtain ingot were characterized using optical microscope, x-ray diffractometer, ultrasonic evaluation, vicker-s hardness tester, and polarization test to evaluate the corrosion resistance. The result showed that Ti-6Mo-6Nb-8Sn has the lowest elastic modulus and vickers hardness value. The Sn addition could suppress α phase formation. Ti-6Mo-6Nb-8Sn has lower corrosion rate compared to commercial Ti6Al4V.

Keywords: Ti-6Mo-6Nb-xSn, Arc Re-melting, Elastic Modulus, Corrosion Resistance

Topic: Metallurgy Engineering

Link: https://ifory.id/abstract/bmcGP8DZHrMa

Conference: Broad Exposure on Science and Technology (BEST 2019)

Plain Format | Corresponding Author (Galih Senopati)

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