Engineering & Materials Science
Fibers
94%
Residual stresses
84%
Composite materials
55%
Laminates
51%
Fatigue of materials
50%
Carbon fiber reinforced plastics
42%
Drilling
41%
Aluminum
41%
Delamination
37%
Bolted joints
37%
Natural fibers
37%
Stiffness
34%
Strain gages
32%
Stress concentration
28%
Reinforcement
28%
Stress intensity factors
24%
Uncertainty analysis
23%
Carbon fibers
22%
Mechanical properties
19%
Metals
18%
Error analysis
18%
Polymers
17%
Compression molding
17%
Characterization (materials science)
17%
Stress analysis
15%
Neutron diffraction
15%
Adhesives
15%
Friction stir welding
14%
Indentation
13%
Toughening
13%
Elastic moduli
12%
Anisotropy
12%
Adhesion
12%
Basalt
12%
Volume fraction
12%
Nanotubes
12%
Sandwich structures
11%
Crack propagation
11%
Computer simulation
11%
Resins
10%
Acoustic impedance
10%
Uncertainty
10%
Fiber optics
10%
Bolts
10%
Fatigue crack propagation
10%
Steel
9%
Transducers
9%
Impact strength
9%
Riveting
9%
Fracture toughness
8%
Chemical Compounds
Fiber
100%
Mechanical Joint
44%
Fatigue Strength
40%
Strength
39%
Reinforced Plastic
39%
Simulation
31%
Composite Material
30%
Delamination
30%
Green
23%
Length
21%
Environmental Friendliness
18%
Shear
17%
Carbon Fiber
17%
Application
16%
Tensile Strength
16%
Aromatic Polyamide
13%
Industry
13%
Impact Strength
13%
Residual Stress
12%
Anisotropy
11%
Fracture Toughness
10%
Foam
8%
Polyester
8%
Velocity
8%
Nanotube
7%
Plate Like Crystal
7%
Environmental Pollution
7%
Time
7%
Elasticity Constant
6%
Stress Corrosion Cracking
6%
Shape
6%
Curing
5%
Energy
5%
Neutron Diffraction
5%
Physics & Astronomy
carbon fiber reinforced plastics
30%
residual stress
17%
Comet Nucleus Tour
17%
lay-up
17%
laminates
16%
bonded joints
14%
fatigue life
13%
stress distribution
11%
strain gages
11%
damage
10%
indentation
9%
composite materials
9%
strain energy release rate
9%
capacitors
8%
stress measurement
8%
capacitance
7%
bolts
6%
fibers
5%
modulus of elasticity
5%
performance
5%
curing
5%