Corrosion Behavior of Titanium Alloys (Ti CP2, Ti-6Al-2Sn-4Zr-2Mo, Ti-6Al-4V and Ti Beta-C) with Anodized and Exposed in NaCl and H2SO4 Solutions

Author:

Gaona-Tiburcio Citlalli1ORCID,Jáquez-Muñoz Jesús Manuel12ORCID,Nieves-Mendoza Demetrio3,Maldonado-Bandala Erick3,Lara-Banda Maria1,Lira-Martinez Manuel Alejandro2ORCID,Reyes-Blas Hortensia2,Baltazar-Zamora Miguel Ángel3ORCID,Landa-Ruiz Laura3ORCID,Lopez-Leon Luis Daimir4ORCID,Almeraya-Calderon Facundo1ORCID

Affiliation:

1. FIME, Centro de Investigación e Innovación en Ingeniería Aeronáutica (CIIIA), Universidad Autónoma de Nuevo León, San Nicolás de los Garza 66455, Mexico

2. Instituto de Ingeniería y Tecnología, Universidad Autónoma de Ciudad Juárez, Ciudad Juárez 32310, Mexico

3. Facultad de Ingeniería Civil, Universidad Veracruzana, Xalapa 91000, Mexico

4. Área Académica de Ingeniería y Arquitectura, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulancingo, Km 4.5, Pachuca 42082, Mexico

Abstract

Nowadays, different industries, such as the aerospace and biomedical industries, prefer using Ti alloys due to their excellent anti-corrosion properties and ability to generate a TiO2 oxide layer; this induces the use of anodization to increase the useful life of components. The aim of this work is to characterize the electrochemical effect of anodizing treatment on titanium alloys (Ti CP2, Ti-6Al-2Sn-4Zr-2Mo, Ti-6Al-4V, and Ti Beta-C) in NaOH and KOH at 1 M, applying a current density of 0.0025 A/cm2. The electrochemical techniques employed were electrochemical noise (EN) and electrochemical impedance spectroscopy (EIS), supported by ASTM G199 and ASTM G106 in electrolytes of NaCl and H2SO4 at 3.5 wt. % as a simulation of marine and industrial atmospheres. Also, the anodized transversal section and surface morphology were characterized by a scanning electron microscope (SEM). The results of both electrochemical techniques indicated that Ti-6Al-2Sn-4Zr-2Mo anodized in NaOH presented the best properties against corrosion, and the thickness of the oxide was the biggest.

Funder

Universidad Autónoma de Nuevo León

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

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