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Laser metal deposition of functionally graded Ti6Al4V/TiC
R. M. Mahamood,
E. T. Akinlabi
Mechanical Engineering Science
University of Johannesburg
University of Ilorin
Research output
:
Contribution to journal
›
Article
›
peer-review
202
Citations (Scopus)
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Keyphrases
Ti-6Al-4V (Ti64)
100%
Functionally Graded
100%
Laser Metal Deposition
100%
Functionally Graded Materials
100%
Laser Metal Deposition Process
66%
Enhanced Properties
33%
Material Combination
33%
Work Environment
16%
Advanced Materials
16%
Composite Materials
16%
Nonlinear Process
16%
Processing Parameters
16%
Military Medicine
16%
Computer Aided Design Model
16%
Three-dimensional Computer-aided Design
16%
Manufacturing Process
16%
Single Process
16%
Chemical Vapor Deposition Processes
16%
Process Parameter Optimization
16%
Tribological Study
16%
Titanium Alloy Composite
16%
Aerospace
16%
Powder Metallurgy
16%
Additive Manufacturing Process
16%
Physical Vapor Deposition
16%
New Manufacturing Processes
16%
Metallurgical Examination
16%
Mechanical Studies
16%
Material Science
Metal Deposition
100%
Functionally Graded Material
100%
Composite Material
16%
Advanced Material
16%
Three Dimensional Printing
16%
Chemical Vapor Deposition
16%
Physical Vapor Deposition
16%
Powder Metallurgy
16%
Vapor Phase Deposition
16%
Titanium Alloys
16%