Ingeniería y ciencia de los materiales
Internal friction
100%
Coatings
62%
Carbon steel
37%
Magnetron sputtering
36%
X ray diffraction
36%
Carbides
33%
Steel
32%
Thin films
30%
Triodes
29%
Austenitic stainless steel
28%
Substrates
28%
Tempering
28%
Martensite
26%
Atomic force microscopy
26%
Hardness
26%
Carbon
25%
Temperature
25%
Bias voltage
24%
Martensitic stainless steel
24%
Multilayers
24%
Pendulums
22%
Fibers
22%
Cast iron
21%
Microstructure
20%
Austenite
20%
Adhesion
19%
Elastic moduli
18%
Martensitic transformations
18%
Laser ablation
18%
Scanning electron microscopy
16%
Plasmas
16%
Cellulose
16%
Phase transitions
16%
Nitrogen
16%
Hydrogen storage alloys
16%
Wear of materials
15%
Pulsed laser deposition
15%
Friction
14%
Tool steel
14%
Plastic deformation
14%
Wear resistance
14%
Boron carbide
14%
Aluminum nitride
14%
Silicon
13%
Chemical analysis
13%
Fractography
12%
X ray diffraction analysis
12%
Surface roughness
12%
X ray photoelectron spectroscopy
12%
Embrittlement
11%
Física y astronomía
internal friction
79%
coatings
48%
carbon steels
47%
steels
34%
carbides
31%
tempering
26%
triodes
25%
magnetron sputtering
22%
stainless steels
22%
carbon
21%
characterization
21%
pendulums
20%
martensite
19%
adhesion
19%
hardness
19%
x rays
18%
arcs
18%
diffraction
18%
casts
17%
austenite
17%
bainitic steel
16%
arc discharges
15%
thin films
15%
temperature
14%
iron
14%
microstructure
14%
fractography
14%
thermal protection
13%
wear resistance
13%
coefficient of friction
13%
atmospheres
13%
boron carbides
12%
silicon
12%
titanium nitrides
12%
atomic force microscopy
12%
abrasives
11%
grain size
11%
laser ablation
11%
nitrogen
11%
aluminum nitrides
11%
electric potential
10%
martensitic transformation
9%
ballistics
9%
nitriding
9%
sliding
9%
cryogenics
9%
projectiles
9%
residual stress
9%
chemical composition
9%
ferrites
8%
Compuestos químicos
Coating Agent
50%
Martensitic Transformation
45%
Tempering
34%
Magnetron Sputtering
31%
Wear
31%
X-Ray Diffraction
27%
Microstructure
25%
Strain
22%
Multilayer
22%
Liquid Film
21%
Austenitic Transformation
21%
Torsion
20%
Shear Modulus
19%
Carbon Atom
19%
Friction Coefficient
17%
Grain Size
17%
Scanning Electron Microscopy
16%
Abrasive
16%
Fractography
15%
Atomic Force Microscopy
15%
Vacuum Arc
14%
Voltage
14%
Fiber
14%
Aluminium Nitride
13%
Stress Relaxation
13%
Laser Ablation
13%
Residual Stress
13%
Embrittlement
13%
Surface
12%
Kinetic Energy
11%
Plasma
11%
Cryogenics
10%
Dissipation
10%
Peroxide
10%
Alloy
10%
Grain Boundary
10%
Cubic Space Group
10%
Hydrogen
10%
Fibrous Crystal
9%
Resistance
9%
Energy
9%
Electron Diffraction
9%
Evaporation
8%
Boron Atom
8%
Poly(propylene)
8%
Edge Dislocation
8%
X-Ray Photoelectron Spectroscopy
8%
Auger Electron Spectroscopy
7%
Enthalpy
7%
Ceramic
7%