Engineering & Materials Science
Friction
100%
Friction stir welding
80%
Welds
57%
High strength steel
46%
Thermal desorption spectroscopy
43%
Riveting
40%
Carbon fibers
40%
Defects
38%
Welding
34%
Hydrogen
31%
Eddy current testing
29%
Steel
28%
Rivets
28%
Aluminum alloys
28%
Inspection
26%
Microstructure
26%
Characterization (materials science)
26%
Aluminum
25%
Nondestructive examination
25%
Eddy currents
24%
Polymers
24%
Hot Temperature
22%
Copper
22%
Composite materials
20%
Martensitic stainless steel
20%
Weldability
19%
Microhardness
18%
Hydrogen embrittlement
18%
Hardness
17%
Mechanical properties
16%
Austenite
15%
Tensile strength
15%
Joining
15%
Fatigue of materials
14%
Electric Conductivity
12%
Forging
12%
Temperature
12%
Coatings
12%
Intermetallics
11%
Advanced high strength Steel
11%
Yield stress
10%
Nonmetallic materials
10%
Repair
10%
Cooling
10%
Metals
10%
Monitoring
10%
Hard facing
10%
Heat affected zone
9%
Scanning electron microscopy
9%
Delamination
9%
Chemical Compounds
Heat
39%
Eddy Current
35%
Aluminium Alloy
33%
Base Material
32%
Plate Like Crystal
30%
Strength
28%
Yield Point
27%
Reinforced Plastic
26%
Fatigue Strength
23%
Microstructure
22%
Thermal Desorption Spectroscopy
21%
Microhardness
20%
Carbon Fiber
19%
Metallic Material
19%
Force
16%
Cooling
15%
Flow
15%
Tensile Strength
14%
Hydrogen
14%
Mechanical Joint
14%
Embrittlement
14%
Strain
14%
Plastic Deformation
14%
Application
12%
Energy
12%
Electrical Conductivity
12%
Crack Initiation
12%
Hardfacing
10%
Electron Backscatter Diffraction
10%
Probe
10%
Foundry
10%
Surface
9%
Optical Microscopy
9%
Shape
9%
Cavitation
8%
Creep
8%
Metal
8%
Forging
8%
Delamination
8%
Industry
7%
Clearance
7%
Composite Material
7%
Magnetic Field
6%
Rod Like Crystal
6%
Alloy
6%
Coating Agent
6%
Casting
6%
Length
6%
Porosity
6%
Contact Resistance
5%
Physics & Astronomy
high strength steels
55%
friction
48%
welding
30%
friction stir welding
28%
riveting
25%
steels
19%
hydrogen
15%
microstructure
15%
desorption
13%
austenite
12%
rivets
11%
intermetallics
10%
aluminum alloys
9%
evaluation
9%
defects
9%
coatings
9%
hydrogen embrittlement
9%
yield strength
9%
travel
8%
mechanical properties
7%
spectroscopy
7%
carbon fibers
7%
transformers
7%
nanoindentation
7%
heat
7%
cavitation flow
6%
aluminum
6%
estimating
6%
stainless steels
6%
foils
6%
trapping
6%
weldability
5%
coils
5%
rods
5%
composite materials
5%
predictions
5%
copper
5%
tensile properties
5%
toughness
5%
degradation
5%
magnetic permeability
5%
characterization
5%
damage
5%