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Study of Asphalt-Concrete Pavement Fatigue Modeling
Peteris Skels
, Viktors Haritonovs
, Pavel Akishin
,
Andris Freimanis
Not published at VTT
Riga Technical University
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
4
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Citations (Scopus)
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Keyphrases
Fatigue Crack
100%
Fatigue Modeling
100%
Pavement
100%
Pavement Fatigue
100%
Asphalt Concrete Pavement
100%
Mechanical Properties
50%
Finite Element Model
50%
Fatigue Simulation
50%
Material Properties
50%
Surface Loading
50%
Computational Resources
50%
Computational Methods
50%
Fatigue Behavior
50%
Long-time Behavior
50%
Serviceability
50%
Material Parameters
50%
ANSYS
50%
Four-layer
50%
Pavement Structure
50%
Asphalt
50%
Fatigue Cycles
50%
Driving Comfort
50%
Fatigue Properties
50%
Asphalt Pavement
50%
Failure Type
50%
Driving Safety
50%
Pavement Failure
50%
Simulation Procedure
50%
Materials Mechanical Behaviors
50%
Transient Materials
50%
Cyclic Surfaces
50%
Highway Pavement
50%
Test Properties
50%
INIS
modeling
100%
fatigue
100%
pavements
100%
asphalts
100%
simulation
28%
laboratories
28%
failures
14%
layers
14%
surfaces
14%
safety
14%
resources
14%
computer codes
14%
cracking
14%
finite element method
14%
loading
14%
accuracy
14%
cracks
14%
trucks
14%
highways
14%
Engineering
Pavement
100%
Concrete Pavements
100%
Fatigue Modeling
100%
Mechanical Property
40%
Applicability
20%
Loading Surface
20%
Serviceability
20%
Term Behavior
20%
Material Parameter
20%
Fatigue Property
20%
Asphalt Pavements
20%
Computational Resource
20%
Fatigue Crack
20%
Finite Element Modeling
20%
Fatigue Behavior
20%
Accident Prevention
20%
Trucks
20%