Binary Zr-Ti alloys spontaneously develop a tenacious and compact oxide layer when their fresh surface is exposed either to air or to aqueous environments. Electrochemical impedance spectroscopy (EIS) analysis of Zr-45Ti, Zr-25Ti, and Zr-5Ti exposed to simulated physiological solutions at 37 C evidences the formation of a non-sealing bilayer oxide film that accounts for the corrosion resistance of the materials. Unfortunately, these oxide layers may undergo breakdown and stable pitting corrosion regimes at anodic potentials within the range of those experienced in the human body under stress and surgical conditions. Improved corrosion resistance has been achieved by prior treatment of these alloys using thermal oxidation in air. EIS...
Zirconium is a potential material for permanent implants. In particular, surface modification induce...
Thanks to its excellent corrosion resistance, good mechanical properties and biocompatibility, titan...
Studies on the stability of anodic oxides grown on zirconium and its biocompatible alloys Ti-50Zr at...
Oxidation in air of ZrTi alloys at 500 ºC for 2 h produces oxide-covered materials with a very high ...
The potential biomedical application of three new quaternary Zr alloys, namely Zr6Ti15Nb4Al, Zr32Ti1...
The in vitro corrosion behavior of four Zr‐based alloys (Zr97.5Nb1.5VM1.0; VM 1⁄4 valve metal: Ti, ...
The electrochemical behavior of Zr5Ti, Zr25Ti, and Zr45Ti, with and without surface modification wer...
The electrochemical behaviour of three ZrTi alloys (Zr5Ti, Zr25Ti and Zr45Ti) in Ringer’s solution h...
A new titanium base Ti-21Nb-15Ta-6Zr alloy covered with hydroxyapatite-zirconia (HA-ZrO2) by pulsed ...
The degradation characteristics of hydroxyapatite-zirconia-silver films (HA-ZrO2-Ag) coatings on thr...
The in vitro corrosion behavior and biocompatibility of two Zr alloys, Zr-2.5Nb, employed for the ma...
in vivo degradation of Ti implants has remained as a concern despite its perceived excellent corrosi...
The research focuses on the development and characterization of innovative thin hybrid oxide coating...
This paper addresses on the electrochemical behaviour of three TiMo alloys exposed to simulated phys...
Pure Ti and 85%Ti-15%Zr alloy were sintered in a heat induction high frequency furnace. The corrosio...
Zirconium is a potential material for permanent implants. In particular, surface modification induce...
Thanks to its excellent corrosion resistance, good mechanical properties and biocompatibility, titan...
Studies on the stability of anodic oxides grown on zirconium and its biocompatible alloys Ti-50Zr at...
Oxidation in air of ZrTi alloys at 500 ºC for 2 h produces oxide-covered materials with a very high ...
The potential biomedical application of three new quaternary Zr alloys, namely Zr6Ti15Nb4Al, Zr32Ti1...
The in vitro corrosion behavior of four Zr‐based alloys (Zr97.5Nb1.5VM1.0; VM 1⁄4 valve metal: Ti, ...
The electrochemical behavior of Zr5Ti, Zr25Ti, and Zr45Ti, with and without surface modification wer...
The electrochemical behaviour of three ZrTi alloys (Zr5Ti, Zr25Ti and Zr45Ti) in Ringer’s solution h...
A new titanium base Ti-21Nb-15Ta-6Zr alloy covered with hydroxyapatite-zirconia (HA-ZrO2) by pulsed ...
The degradation characteristics of hydroxyapatite-zirconia-silver films (HA-ZrO2-Ag) coatings on thr...
The in vitro corrosion behavior and biocompatibility of two Zr alloys, Zr-2.5Nb, employed for the ma...
in vivo degradation of Ti implants has remained as a concern despite its perceived excellent corrosi...
The research focuses on the development and characterization of innovative thin hybrid oxide coating...
This paper addresses on the electrochemical behaviour of three TiMo alloys exposed to simulated phys...
Pure Ti and 85%Ti-15%Zr alloy were sintered in a heat induction high frequency furnace. The corrosio...
Zirconium is a potential material for permanent implants. In particular, surface modification induce...
Thanks to its excellent corrosion resistance, good mechanical properties and biocompatibility, titan...
Studies on the stability of anodic oxides grown on zirconium and its biocompatible alloys Ti-50Zr at...