Engineering & Materials Science
Carbon fiber reinforced plastics
100%
Laminates
61%
Plastic laminates
60%
Fibers
58%
Composite materials
48%
Fatigue of materials
37%
Glass fibers
31%
Cracks
28%
Fracture toughness
28%
Carbon fibers
23%
Thermoplastics
23%
Debonding
22%
Crack propagation
22%
Crack initiation
20%
Mechanical properties
18%
Strain rate
18%
Polymer matrix composites
17%
Carbon carbon composites
14%
Delamination
14%
Degradation
14%
Glass
13%
Thermal stress
13%
Tensile strength
13%
Stress concentration
12%
Glass fiber reinforced plastics
11%
Mirrors
10%
Carbon nanotubes
10%
Residual stresses
10%
Epoxy resins
10%
Resins
10%
Creep
10%
Dimensional stability
10%
Stress corrosion cracking
10%
Tensile properties
9%
Moisture
9%
Fiber reinforced plastics
9%
Fatigue damage
9%
Aging of materials
9%
Water
9%
Nanostructures
9%
Carbon
8%
Finite element method
8%
Bending tests
8%
Plastics
8%
Yarn
8%
Energy absorption
7%
Deionized water
7%
Energy release rate
7%
Temperature
6%
Aluminum
6%
Chemical Compounds
Reinforced Plastic
92%
Laminated Plastic
70%
Carbon Fiber
58%
Composite Material
41%
Fracture Toughness
29%
Strength
29%
Glass
28%
Strain
27%
Crack Initiation
26%
Crack Propagation
23%
Delamination
20%
Environment
20%
Residual Stress
16%
Energy
14%
Creep
13%
Tensile Strength
13%
Stress Corrosion Cracking
12%
Length
10%
Carbon Atom
10%
Surface
9%
Epoxy Resin
9%
Shear
9%
Cantilever Beam
9%
Shear Strength
8%
Time
7%
Compression Strength
7%
Plastic Deformation
6%
Cryogenics
6%
Fatigue Strength
6%
Dissipation
5%
Fracture Mechanics
5%
Nanomaterial
5%
Stress Relaxation
5%
Aluminium Alloy
5%
Physics & Astronomy
carbon fiber reinforced plastics
21%
laminates
18%
fracture strength
11%
cracks
10%
evaluation
7%
damage
7%
fibers
6%
shear
5%
carbon fibers
5%