Keyphrases
Aged Asphalt
83%
Aged Asphalt Binder
100%
Aggregation Patterns
16%
Alkane Chain
16%
Approaches to Study
16%
Asphalt
33%
Asphalt Binder
50%
Asphalt Binder Performance
16%
Asphalt Industry
16%
Asphaltene
83%
Asphaltenes Molecules
16%
Average Aggregation number
16%
Binder
16%
Compaction Temperature
33%
Computational Approach
16%
Construction Practice
100%
Cracking Property
33%
Critical Cracking Temperature
16%
Differential Scanning Calorimetry
16%
Glass Transition Temperature
33%
Lamellar Structure
16%
Mixing Temperature
33%
Molecular Dynamics Simulation
16%
Multiscale Characterization
100%
Nanoaggregates
50%
Onset Temperature
16%
Oxidized Asphaltene
83%
Paraffin Wax
100%
Parallel Stacks
16%
Pavement Construction
16%
Percent Recovery
16%
Performance Characteristics
16%
Radial Distribution Function
16%
Rejuvenator
16%
Residual Mass
16%
Rheology
16%
Stiffness
66%
Stress Relaxation
33%
Thermal Stability
16%
Thermogravimetric Analysis
16%
Wax Additive
100%
Wax Content
33%
Wax Molecules
100%
Engineering
Aged Asphalt
100%
Aggregation Number
9%
Asphalt Binder
100%
Asphaltene
90%
Computer Simulation
9%
Lamellar Structure
9%
Mass Residual
9%
Molecular Level
9%
Multiscale
100%
Onset Temperature
9%
Paraffin Wax
54%
Pavement Construction
9%
Performance Characteristic
9%
Radial Distribution
9%
Rheology
9%
Straight-Chain Alkane
9%
Stress Relaxation
18%
Material Science
Asphalt
100%
Asphaltene
55%
Differential Scanning Calorimetry
5%
Glass Transition Temperature
11%
Lamellar Structure
5%
Rheology
5%
Stress Relaxation
11%
Thermal Stability
5%
Thermogravimetric Analysis
5%
Chemical Engineering
Differential Scanning Calorimetry
16%
Paraffin Wax
100%