Engineering & Materials Science
Superconducting materials
100%
Temperature
35%
Flux pinning
33%
Plasmas
31%
Powders
27%
Carbon
26%
Coatings
23%
Microstructure
21%
Mechanical alloying
21%
Magnetic fields
18%
Infiltration
18%
Oxygen reduction reaction
18%
Magnetization
17%
Metals
16%
Fatigue of materials
15%
Oxygen
15%
Nanoparticles
15%
Doping (additives)
15%
Thin films
14%
Liquids
14%
Nitriding
14%
Substrates
14%
Soldering alloys
14%
Crystals
13%
Corrosion
13%
Boron
13%
Solid solutions
12%
Magnesium alloys
12%
Stamping
12%
Nitrogen
12%
Magnets
11%
Corrosion resistance
11%
Transmission electron microscopy
10%
Sintering
10%
Steam
10%
Diamonds
10%
Crystalline materials
9%
Grain boundaries
9%
Undercooling
9%
Oxides
9%
Fabrication
9%
Scanning electron microscopy
8%
Chemical analysis
8%
Sodium chloride
8%
Electrons
8%
Mechanical properties
8%
Ions
8%
Fatigue crack propagation
8%
Solid state reactions
8%
Scanning
8%
Single crystals
8%
Thermal fatigue
7%
Silver
7%
Magnesium
7%
Texturing
7%
High temperature superconductors
7%
Composite films
7%
Hot Temperature
7%
Titanium
7%
Thermal conductivity
7%
X ray diffraction
7%
Catalysts
7%
Cracks
7%
Electrocatalysts
7%
Crystallization
7%
Superconducting transition temperature
7%
Atomic force microscopy
7%
Creep
6%
Solidification
6%
Shape memory effect
6%
Amorphous carbon
6%
Silver nanoparticles
6%
Composite materials
6%
Spark plasma sintering
6%
Fluxes
6%
Magnetic properties
6%
Seed
6%
Recovery
6%
Aluminum
6%
Polymers
5%
Finite element method
5%
Oxidation
5%
Atoms
5%
Contact resistance
5%
Electron beams
5%
Current density
5%
Platinum
5%
Steel
5%
Characterization (materials science)
5%
Bismuth
5%
Surface treatment
5%
Semiconductor materials
5%
Austenitic stainless steel
5%
Annealing
5%
Chlorine
5%
Glass
5%
Cooling
5%
Electron holography
5%
Sonication
5%
Nucleation
5%
Chemical Compounds
Superconductor
90%
Alloy
36%
Current Density
30%
Microstructure
24%
Magnetic Field
23%
Levitation
21%
Liquid Film
18%
Plasma
17%
Mechanical Alloying
17%
Coating Agent
17%
Surface
14%
Dioxygen
14%
Magnetization
13%
Solder
13%
Magnesium Alloy
13%
Sintering
13%
Carbon Atom
13%
Crack Propagation
13%
Liquid
12%
Thermoelectricity
12%
Grain Boundary
10%
Amorphous Material
10%
Force
10%
Corrosion Resistance
9%
Reduction
9%
Nanoparticle
9%
Composite Material
9%
Solid Solution
8%
Creep
8%
Boron Atom
8%
Metal
8%
Application
8%
Strain
8%
Thermal Fatigue
8%
Simulation
8%
Amount
7%
Corrosion
7%
Time
7%
Nitrogen
6%
Solidification
6%
Thermal Conductivity
6%
Wear
6%
Cooling
6%
Polarization
6%
Ductility
6%
Contact Resistance
5%
Plastic Deformation
5%
Resistance
5%
Superconductive Transition Temperature
5%
Martensitic Transformation
5%
Oxide
5%
Lanthanoid Atom
5%
Magnetic Flux
5%
Semiconductor
5%
Ceramic
5%
Shape Memory Alloys
5%
Size Reduction
5%
Shape Memory Effect
5%
Aluminium Alloy
5%
Single Crystalline Solid
5%
Solid State Reaction
5%
Heat Treatment
5%
Energy Storage
5%
Melting
5%
Physics & Astronomy
critical current
30%
current density
23%
flux pinning
21%
infiltration
18%
levitation
17%
microstructure
16%
temperature
13%
performance
12%
carbon
12%
fatigue life
11%
magnetization
11%
solders
10%
solid state
9%
coatings
9%
synthesis
9%
sintering
8%
alloying
8%
magnets
8%
nanoparticles
8%
seeds
8%
boron
8%
scanning electron microscopy
8%
corrosion
8%
magnetic fields
8%
oxygen
7%
liquid oxygen
7%
mechanical properties
7%
steam
6%
trapped magnetic fields
6%
magnesium alloys
6%
supercooling
6%
solid solutions
6%
trapping
6%
crack propagation
6%
metals
6%
crystallization
6%
composite materials
6%
fabrication
6%
crystals
6%
balls
6%
cycles
6%
YBCO superconductors
6%
liquid phases
6%
thin films
5%
optimization
5%
thermal fatigue
5%
x rays
5%
solidification
5%
permanent magnets
5%
air
5%
silver
5%
cooling
5%
diffraction
5%
evaluation
5%
liquids
5%
stamping
5%
corrosion resistance
5%
high temperature superconductors
5%