Engineering & Materials Science
Thermomechanical pulp
100%
Pore structure
76%
Fibers
69%
Cellulose
67%
Pulp
66%
Acids
65%
Dissolution
64%
Hydrolysis
49%
Cellulose films
37%
Temperature
36%
Composite materials
35%
Polymerization
34%
Swelling
34%
Tensile strength
29%
Water absorption
28%
Impact strength
27%
Lignin
15%
Kraft pulp
14%
Differential scanning calorimetry
13%
Crystallization
13%
Injection molding
12%
Sodium hydroxide
11%
Elastic moduli
10%
Drying
9%
Reinforcement
9%
Scanning electron microscopy
9%
Porosity
8%
Chemical Compounds
Fiber
70%
Pore Structure
58%
Dissolution
45%
Tensile Strength
31%
Composite Material
30%
Liquid Film
29%
Impact Strength
27%
Hydrolysis
22%
Polymerization Reaction
22%
Rate of Crystallization
15%
Hemicellulose
14%
Porosity
14%
Young's Modulus
13%
Acid Hydrolysis
12%
Lignin
12%
Solvent
11%
Reduction
11%
Differential Scanning Calorimetry
8%
Scanning Electron Microscopy
7%
Purity
6%
Earth & Environmental Sciences
pulp
58%
fiber
45%
acid
38%
tensile strength
37%
melt
26%
damage
15%
Young modulus
14%
lignin
13%
calorimetry
12%
reinforcement
12%
crystallization
9%
test
9%
scanning electron microscopy
8%
water
7%