Ingenieurwesen & Materialwissenschaft
Nanocrystallization
100%
Metallic glass
84%
Fibers
82%
Nanoindentation
76%
Polyethylenes
63%
Strain rate
55%
Aging of materials
48%
Brillouin scattering
46%
Thermoplastics
43%
Degradation
41%
Light scattering
34%
Softwoods
30%
Gel permeation chromatography
26%
Nanocrystals
25%
Tensile testing
19%
Glass transition
19%
Superconducting transition temperature
18%
Crystallization
18%
Polymers
12%
Functional materials
12%
Biocompatibility
10%
Vickers hardness
10%
Passivation
10%
Viscous flow
10%
Unbleached pulp
9%
Differential scanning calorimetry
9%
Mechanical properties
9%
Crystalline materials
9%
Bleached pulp
8%
Current density
8%
Elastic constants
8%
Corrosion resistance
7%
Macros
7%
Kraft pulp
7%
Creep
7%
Viscosity
6%
Glass
6%
Corrosion
6%
Heating
6%
Pulp
5%
Liquids
5%
Inelastic scattering
5%
Wood
5%
Relaxation
5%
Chemie
Nanocrystallization
92%
Metallic Glass
78%
Gel Permeation Chromatography
57%
Strain
42%
Fiber
38%
Creep
36%
Liquid Film
29%
Differential Scanning Calorimetry
21%
Glass Transition Temperature
14%
Nanocrystal
14%
Time
13%
Crystallization
11%
Vickers Hardness
11%
Chemical Passivation
8%
Rod Like Crystal
8%
Corrosion Resistance
7%
Current Density
6%
Corrosion
6%