INIS
surfaces
100%
machining
92%
alloys
88%
performance
56%
powders
53%
removal
41%
roughness
40%
modifications
28%
electrochemical corrosion
26%
investigations
26%
optimization
26%
capacitance
25%
voltage
25%
titanium alloys
24%
craters
21%
implants
21%
wires
17%
modeling
17%
size
16%
reviews
13%
plasma
13%
drilling
13%
simulation
13%
prediction
13%
ceramics
13%
applications
12%
efficiency
10%
biological materials
9%
output
9%
bacteria
9%
adhesion
9%
hardness
8%
surface treatments
8%
microhardness
8%
bones
7%
thickness
7%
layers
7%
apatites
7%
values
7%
energy
7%
melting
6%
width
6%
concentration
5%
bacillus subtilis
5%
tungsten carbides
5%
Keyphrases
Treated Surface
35%
Machined Surface
31%
Surface Roughness
30%
Biomedical Alloys
26%
Reverse Engineering
26%
Bacterial Attachment
26%
Powder-mixed EDM
26%
Wetting Behavior
26%
Tribological Behavior
26%
Tribological Performance
26%
Electrochemical Corrosion
26%
Adhesion Cell
26%
Corrosion Behavior
26%
Cell Proliferation
26%
Biological Performance
26%
Recast Layer
26%
Surface Characteristics
26%
White Layer Thickness
26%
Functional Surface
26%
Cell Adhesion
26%
Powder Mixture
26%
Chemical Composition
26%
Osteogenic Differentiation
26%
Faculty Development
26%
Grant Program
26%
Numerical Investigation
13%
Antibacterial Response
13%
Micro-WEDM
13%
Ti-29Nb-13Ta-4.6Zr
13%
Antibacterial Properties
13%
Electrical Discharge Machining
13%
Non-conductive Ceramics
13%
Average Surface Roughness
13%
Material Removal Mechanism
13%
WEDM Parameters
13%
Material Removal Rate
12%
Plasma Flushing Efficiency
10%
Gap Voltage
8%
Kerf Width
8%
Orthopedic Implants
8%
Traditional Industries
6%
Discharge Machining
6%
Circularity Error
6%
Tungsten Carbide WC
6%
Engineering
Electrodischarge Machining
71%
Material Removal Rate
30%
Machined Surface
28%
Electrochemical Corrosion
26%
Multiscale
26%
Bacterial Attachment
26%
Reverse Engineering
26%
Osteogenic Differentiation
26%
Corrosion Behavior
26%
Recast Layer
26%
Layer Thickness
26%
Antibacterial Property
26%
Electric Discharge Machining
20%
Ti-6al-4v Alloy
20%
Performance Parameter
17%
Average Surface Roughness
17%
Gap Voltage
15%
Microhardness
15%
Machining Performance
15%
Biomedical Application
13%
Biofilm Formation
13%
Electrical Discharge
13%
Phase Change Material
13%
Computer Simulation
13%
Input Parameter
13%
Conductive
13%
Analytical Model
13%
Material Removal Mechanism
13%
Mixed Micro
13%
Induced Surface
13%
Numerical Modeling
13%
Experimental Investigation
13%
Molten Material
13%
Tribological Behavior
13%
Manufactured Ti6al4v
13%
Selective Laser Melting
13%
Implant
13%
Wear Resistance
10%
Microhardness
8%
Stainless Steel
8%
Chemical Polishing
8%
Machining Parameter
8%
Surface Treatment Technique
8%
Current Pulse
8%
Additive Method
6%
Adhesion Formation
6%
Subtractive Method
6%
Circularity
6%
Conventional Machining
6%
Intricate Shape
6%
Forming Surface
6%
Discharge Energy
6%
Aeruginosa
6%
Microelectro
6%
Metallic Biomaterials
6%