Keyphrases
Borides
93%
Thermal Diffusion
32%
Cathodic Reduction
32%
Boride Layer
30%
Electrochemical Boriding
29%
Diffusion-based
29%
Reduction-diffusion
28%
Low Carbon Steel
27%
TiB2
24%
Fe2B
21%
Current Density
20%
CRTD-Bor
20%
Titanium Diboride
15%
Phase Homogenization
15%
Borax
13%
Electrolyte
12%
Molten Salt Electrolysis
12%
Adhesion
10%
Cathodic Arc Deposition
9%
Duplex Process
9%
TiC-TiB2
9%
M2 High-speed Steel
9%
Pulse Current
9%
Supercapacitor Application
9%
Nickel Boride
9%
Boriding Process
9%
Borided Steel
8%
Rutile
8%
Electronic Properties
7%
Optical Properties
7%
Duty Cycle
7%
Boron Diffusion
7%
Oxide-based
7%
X-ray Diffraction Method
7%
Steel Substrate
7%
Activation Energy
7%
Fracture Toughness
7%
Fe2B Phase
6%
Process Duration
6%
Scanning Electron Microscopy
6%
Hardmetal
6%
Molten Salt
6%
Boride Phase
6%
Constant Current Density
6%
Defect Density
6%
Tribological Properties
6%
Growth Kinetics
6%
Cyclic Voltammetry
6%
X-ray Diffraction (XRD) Analysis
6%
Iron Boride
5%
Engineering
Boriding
100%
Thermal Diffusion
46%
Mild Steel
30%
Molten Salt Electrolysis
18%
Process Parameter
14%
Ray Diffraction Method
11%
Cross Section
10%
Current Pulse
9%
Cathodic Arc
9%
Physical Vapor Deposition
9%
Supercapacitor
9%
X-Ray Diffraction Analysis
9%
Thin Films
8%
Iron
7%
Duty Cycle
7%
Capacitive
7%
Mols
7%
Indentation
7%
Wear Resistance
5%
Growth Kinetics
5%
Layer Thickness
5%
Ray Diffraction
5%
Material Science
Boride
72%
Density
29%
Thermal Diffusion
28%
Low Carbon Steel
23%
Homogenization
18%
Scanning Electron Microscopy
17%
Titanium
15%
Oxide Compound
11%
X-Ray Diffraction
11%
Supercapacitors
9%
Boron
9%
Cyclic Voltammetry
9%
Fracture Toughness
9%
X Ray Diffraction Analysis
8%
Tungsten
7%
Electronic Property
7%
Electrodeposition
6%
Inconel
6%
Thin Films
6%
Defect Density
6%
Capacitance
6%
Anode
5%