Influence of oxygen ion irradiation on the corrosion aspects of Ti-5%Ta-2%Nb alloy and oxide coated titanium

Ningshen, S. ; Kamachi Mudali, U. ; Mukherjee, P. ; Sarkar, A. ; Barat, P. ; Padhy, N. ; Baldev Raj, (2008) Influence of oxygen ion irradiation on the corrosion aspects of Ti-5%Ta-2%Nb alloy and oxide coated titanium Corrosion Science, 50 (8). pp. 2124-2134. ISSN 0010-938X

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Official URL: http://linkinghub.elsevier.com/retrieve/pii/S00109...

Related URL: http://dx.doi.org/10.1016/j.corsci.2008.03.019

Abstract

The corrosion resistance of Ti-5%Ta-2%Nb alloy and DOCTOR (double oxide coating on titanium for reconditioning) coated titanium by O5+ ion irradiation were compared and investigated for their corrosion behaviour. O5+ ion irradiations were carried out at a dose rate of 1 × 1017, 1 × 1018 and 1 × 1019 ions/m2 at 116 MeV. The surface properties and corrosion resistance were evaluated by using scanning electron microscopy (SEM), atomic force microscopy (AFM), energy dispersive X-ray (EDX), glancing-angle X-ray diffraction (GXRD) and electrochemical testing methods. The results of electrochemical investigations in 11.5 N HNO3 indicated that the open circuit potential (OCP) of DOCTOR coated titanium is nobler than Ti-5%Ta-2%Nb alloy. The potentiodynamic polarization study of Ti-5%Ta-2%Nb alloy and DOCTOR coated specimen indicated decrease in passive current density with increase in ion doses (1 × 1017 to 1 × 1019 ions/m2) indicating decrease in anodic dissolution. Nyquist arc behaviour in the electrochemical impedance study substantiated the enhancement in oxide layer stability by O5+ ion irradiation. AFM results revealed that the DOCTOR coated Ti surface was dense without gross voids, and the surface roughness decreased by O5+ ion irradiation, but increased after corrosion test. EDX and GXRD patterns of DOCTOR coated Ti sample indicated that the coating was mainly composed of rutile TiO2. Based on the above results, the O5+ ion irradiation effect on corrosion behavior of Ti-5%Ta-2%Nb alloy and DOCTOR coated titanium are discussed in this paper.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:A. Ti; TiTaNb; B. Irradiation; AFM; C. Nitric Acid Corrosion
ID Code:40272
Deposited On:23 May 2011 10:42
Last Modified:23 May 2011 10:42

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