Engineering & Materials Science
Carbon fiber reinforced plastics
93%
Plastic laminates
89%
Fatigue of materials
70%
Microwaves
43%
Laminates
43%
Microscopes
42%
Cracks
37%
Nanowires
35%
Crack initiation
35%
Electric properties
29%
Thermoplastics
27%
Delamination
26%
Fasteners
23%
Electric currents
23%
Carbon fibers
22%
Carbon nanotubes
18%
Thermal stress
16%
Crack propagation
16%
Fatigue damage
15%
Nanostructures
15%
Temperature
13%
Mechanical properties
13%
Copper
12%
Fibers
12%
Fracture toughness
12%
Residual stresses
12%
Composite materials
11%
Glass fiber reinforced plastics
11%
Fabrication
10%
Aluminum
10%
Dissimilar materials
10%
Stainless steel
10%
Oxides
10%
Osteoblasts
10%
Yarn
10%
Metal coatings
10%
Atomic force microscopy
9%
Bond strength (materials)
9%
Scanning
9%
Characterization (materials science)
9%
Graphene
9%
Cantilever beams
8%
Oxidation
8%
Coatings
8%
Adhesives
7%
Topography
7%
Catalysts
7%
Imaging techniques
7%
Aluminum alloys
6%
Exfoliation (materials science)
6%
Chemical Compounds
Laminated Plastic
100%
Reinforced Plastic
85%
Carbon Fiber
66%
Crack Initiation
51%
Delamination
36%
Microwave
20%
Crack Propagation
18%
Current
17%
Fastener
16%
Fracture Toughness
15%
Cantilever Beam
15%
Residual Stress
14%
Nanomaterial
14%
Strength
14%
Surface
13%
Force
13%
Nanowire
12%
Electrical Property
11%
Fatigue Strength
11%
Probe
10%
Energy
10%
Glass
10%
Composite Material
9%
Aluminium Alloy
8%
Carbon Nanotube
7%
Adhesive Strength
7%
Exfoliation
7%
Foil
6%
Fatigue Limit
6%
Liquid Film
6%
Ambient Reaction Temperature
5%
Graphene
5%
Strain Energy
5%
Application
5%
Physics & Astronomy
carbon fiber reinforced plastics
27%
microwaves
20%
fasteners
20%
laminates
18%
microscopes
15%
grasses
15%
nanowires
14%
electrical properties
12%
atomic force microscopy
11%
probes
11%
cracks
11%
copper
8%
healing
8%
adhesion
8%
glass fiber reinforced plastics
7%
crack initiation
7%
thermal stresses
7%
evaluation
7%
electric current
6%
fatigue life
6%
room temperature
6%
fatigue tests
6%
residual stress
5%
characterization
5%
spatial resolution
5%