SciELO - Scientific Electronic Library Online

 
vol.28 número3La concentración de jugos de fruta: Aspectos básicos de los procesos sin y con membranaComportamiento microestructural del acero AISI 1045 endurecido en frío y traccionado índice de autoresíndice de materiabúsqueda de artículos
Home Pagelista alfabética de revistas  

Servicios Personalizados

Revista

Articulo

Indicadores

Links relacionados

  • No hay articulos similaresSimilares en SciELO

Compartir


Revista de la Facultad de Ingeniería Universidad Central de Venezuela

versión impresa ISSN 0798-4065

Resumen

CAMERO, Sonia; OLIMPIO, Franlis; ROMERO, Dubravka  y  SYAREZ, Maribel. A corrosiveness Ti6Al4V alloy subjected to different surface treatments. Rev. Fac. Ing. UCV [online]. 2013, vol.28, n.3, pp.77-90. ISSN 0798-4065.

In this study the corrosion behavior in a Ti6Al4V alloy with mechanical surface treatment (grinding and polishing) and chemical (HNO3, NaOH and H2O2/H2SO4) was evaluated in a simulated body fluid solution (SBFS) using Scanning Electron Microscopy techniques (SEM), Energy Dispersive X Ray Spectrometer (EDS) and electrochemical tests. The treated samples were subjected to a static corrosion test for 0, 180 and 360 h in SFCS with pH ≈ 7.4 and T ≈37 ± 1 ° C, so as to simulate the conditions of implantation in the human body. These samples were then tested by electrochemical potentiodynamic polarization. The formed product layers as well as the surfaces were evaluated by SEM and EDS after removing such products. The samples treated with NaOH and H2O2/H2SO4 had porous and uniform coating, while the other treated samples showed a titanium oxide layer. In general, all samples of Ti6Al4V alloy with surface treatment and exposed to SBFS for different times showed, above 400 mV, a pseudo-passivation allowing confirming its advantages in biomedical applications. The characterization of the product layer confirmed the presence of calcium on the surface of the polished samples, treated with NaOH and H2O2/H2SO4, suggesting the formation of apatite on the surface. The samples with roughing treatment to 0 h of immersion SFCS presented surface damage revealed by preferential dissolution of α phase.

Palabras clave : Alloy Ti6Al4V; Surface treatment; Corrosion; Simulated body fluid (SBFS); Biomaterial.

        · resumen en Español     · texto en Español     · Español ( pdf )