Comparative Analysis of the Corrosion Resistance of Titanium Alloys Intended to Come into Direct or Prolonged Contact with Live Tissues.

Ti13Nb13Zr Ti45Nb Ti6Al4V cations release fatigue corrosion generalized corrosion localized corrosion metallic scaffolds nanostructure titanium alloys

Journal

Materials (Basel, Switzerland)
ISSN: 1996-1944
Titre abrégé: Materials (Basel)
Pays: Switzerland
ID NLM: 101555929

Informations de publication

Date de publication:
03 Sep 2019
Historique:
received: 14 07 2019
revised: 20 08 2019
accepted: 30 08 2019
entrez: 6 9 2019
pubmed: 6 9 2019
medline: 6 9 2019
Statut: epublish

Résumé

The evaluation of the biological safety and degradation of materials is quite important for risk assessment in various biomedical applications. In this study, two procedures were followed to characterize the corrosion resistance of different Ti-based alloys. The first one consisted of performing specific electrochemical tests (open circuit potential, linear resistance polarization, Tafel plots, potentiodynamic polarization) in order to highlight their behavior to the general and localized corrosion. The static and dynamic fatigue cycles combined with crevice corrosion conducted on a new prototype have completed the study. The second procedure followed was a cations extraction investigation (by inductively coupled plasma mass spectrometry) in order to verify the ionic permeability of the oxides layers formed on the surfaces. Optical and scanning electron microscopy were used for surface analysis. It was noticed that in these two electrolytes, the bulk Ti-based alloys presented an almost similar general corrosion behavior. The small differences of behavior for Ti6Al4V scaffolds were correlated to the surface oxidation and roughness (owing to the selective laser melting process). The Ti alloys presented no traces of localized corrosion at the end of the test. The fatigue cycles revealed that a strong and adhesive oxides film was formed during the static cycles (difficult to remove even during the depassivation steps). The concentration of cations released was at the detection limit, revealing very good passivation films, in adequacy with the all the other results.

Identifiants

pubmed: 31484467
pii: ma12172841
doi: 10.3390/ma12172841
pmc: PMC6751502
pii:
doi:

Types de publication

Journal Article

Langues

eng

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Auteurs

Florina Ionescu (F)

Roctool SA, 34 Allée du Lac d'Aiguebelette, 73370 Chambéry, France.

Lucien Reclaru (L)

Scientific Consultant Biomaterials and Medical Devices, 103 Paul-Vouga, 2074 Marin-Neuchâtel, Switzerland.

Lavinia Cosmina Ardelean (LC)

Department of Technology of Materials and Devices in Dental Medicine, "Victor Babes" University of Medicine and Pharmacy Timisoara, 2 Eftimie Murgu sq, 300041 Timisoara, Romania. lavinia_ardelean@umft.ro.

Andreas Blatter (A)

PX Group SA, 42 Blvd des Eplatures, 2300 La Chaux de Fonds, Switzerland.

Classifications MeSH