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Artigo 2006

Effects of the high-temperature plasma immersion ion-implantation treatment on corrosion behavior of Ti-6Al-4V

Autores

da Silva, Leide Lili G.
Ueda, Mário
Codaro, Eduardo Norberto

IEEE Transactions on Plasma Science , vol. 34 , no. 4 I , pp. 1141-1147

ISSN: 00933813

8
Citações
4
Autores

Resumo

Nitrogen implantation into Ti alloys at higher temperatures improves their mechanical and corrosion resistance properties by forming a thicker nitride layer. In this paper, two different sets of Ti-6Al-4V samples were plasma immersion ion implantation (PIII)-treated using nitrogen plasma, varying the treatment time from 30 to 150 min (800 °C) and the process temperature from 400 °C 800 °C (t = 60 min). Nanoindentation measurements of the PIII-treated samples at 800 °C during 150 min showed the highest hardness value, 24 GPa, which is about four times bigger than untreated sample hardness. The N penetration at these conditions reached approximately 150 nm as analyzed by Auger spectroscopy. On the other hand, the lowest passive current density (3 × 10-7 A · cm-2) was obtained for a PIII-treated sample during 30 min at higher temperature (800 °C). The corrosion resistance of this sample is almost the same as for the untreated specimen. Corrosion behavior evidenced that in strong oxidizing media, all PIII-treated samples are more corrosion resistant than the untreated one. PIII processing at higher temperatures promotes smoothing of the sample surface as observed by scanning electron microscopy (SEM). Grazing incidence X-ray diffraction analyses of the untreated samples identified the two typical Ti phases, Ti α and Ti β. After the implantation, Ti2N and TiO2 phases were also detected. © 2006 IEEE.

Palavras-chave

Corrosion Hardness measurement Ion implantation Titanium alloys

Nuclear and High Energy Physics (PHYS) Condensed Matter Physics (PHYS)
: Scopus
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