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Tribocorrosion behaviour of laser cladded biomedical grade titanium alloy
B. A. Obadele
, A. Andrews
,
P. A. Olubambi
, M. T. Mathew
, S. Pityana
Tshwane University of Technology
Kwame Nkrumah University of Science and Technology
Rush University
Council for Scientific and Industrial Research
Research output
:
Contribution to journal
›
Article
›
peer-review
19
Citations (Scopus)
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Engineering
Laser System
100%
Polarization Curve
100%
Pin-on-Disc
100%
Potentiostat
100%
Coefficient of Friction
100%
Aluminum Oxide
100%
Keyphrases
Ti-6Al-4V (Ti64)
100%
Titanium Alloy
100%
Tribocorrosion Behavior
100%
Sodium Chloride
62%
Electrolyte
25%
Laser System
12%
Potentiostat
12%
Friction Coefficient
12%
Ytterbium Lasers
12%
Corrosion Potential
12%
Wear Depth
12%
Potentiodynamic Polarization Curve
12%
Corrosion Current Density
12%
Pin-on-disc Tribometer
12%
Alumina Ball
12%
Ti Particles
12%
Commercially Pure Ti
12%
Physics
Potentiodynamic
100%
Coefficient of Friction
100%
Tribometers
100%
Titanium Alloys
100%
Material Science
Tribocorrosion
100%
Titanium Alloys
100%
Density
25%
Corrosion
25%
Aluminum Oxide
25%
Ytterbium
25%
Corrosion Potential
25%
Coefficient of Friction
25%
Chemical Engineering
Potentiodynamic Polarization
100%