Engineering
Ti-6al-4v
100%
Corrosion Behavior
100%
Fretting Corrosion
100%
Energy Engineering
16%
Joints (Structural Components)
16%
Friction Coefficient
16%
Hip Implant
16%
Biomedical Application
8%
Limitations
8%
Metal Matrix Composite
8%
Phase Particle
8%
Ti-6al-4v Alloy
8%
Wear Resistance
8%
Bearing Component
8%
Wear Property
8%
Corrosion Property
8%
Slip Condition
8%
Hip Prosthesis
8%
Ion Release
8%
Micromotion
8%
Metallic Biomaterials
8%
Stainless Steel
8%
Fretting
8%
Material Science
Zirconia
100%
Ti-6Al-4V
100%
Fretting Corrosion
100%
Tribocorrosion
23%
Titanium Alloys
15%
Wear Resistance
7%
Stainless Steel
7%
Cobalt
7%
Titanium
7%
Microstructural Analysis
7%
Metal Matrix Composite
7%
Wear Property
7%
Fretting
7%
Oxide Particle
7%
Metallic Biomaterial
7%
Keyphrases
Hip Implant
16%
Arthroplasty Surgery
16%
Femoral Head
8%
Femoral Neck
8%
Total Hip Arthroplasty
8%
Mechanical Condition
8%
Tribocorrosion Resistance
8%
Cobalt Chrome
8%
Host Environment
8%
Partial Slip Condition
8%
Contact Configuration
8%
Micromotion
8%
Metal Ion Release
8%
Bearing Joint
8%
Metallic Biomaterials
8%
Load Influences
8%
Modular Junction
8%
Energy Coefficient
8%
Gross Slip
8%
Total Joint Arthroplasty
8%
Hip Prosthesis
8%