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Keyphrases
Accurate Identification
25%
Boussinesq
25%
Cable
75%
Comparison with Experimental Data
25%
Computation Time
50%
Computationally Expensive
25%
Contact Behavior
25%
Contact Interface
25%
Contact Point
50%
Cyclic Loading
25%
External Force
25%
Fatigue Evaluation
25%
Fatigue Wear
25%
Finite Element Simulation
25%
Fretting
25%
Fretting Fatigue
25%
General Applicability
25%
Half-space
25%
Helical Strands
100%
High Computational Efficiency
25%
High Durability
25%
High Flexibility
25%
High Strength
25%
Internal Stress
25%
Local Sliding
25%
Microslip
100%
Model Support
25%
Multiple Contact Points
25%
Non-Hertzian Contact
25%
Normal Loading
25%
Normal Traction
50%
Numerical Modeling
25%
Point Load
25%
Reduced Computational Complexity
25%
Semi-analytical Approach
25%
Semi-analytical Method
100%
Sliding Distance
25%
Stick-slip
25%
Stranded Cable
100%
Subsurface Stress Field
25%
Tangential Load
25%
Tangential Traction
50%
Traction Distribution
75%
Wear Simulation
25%
Engineering
Applicability
20%
Boussinesq's Hypothesis
20%
Computation Time
40%
Computational Efficiency
20%
Contact Point
60%
Cyclic Loading
20%
Data Element
20%
Experimental Observation
20%
Finite Element Analysis
20%
Fretting
20%
Fretting Fatigue
20%
Internal Stress
20%
Local Sliding
20%
Mechanical Fatigue Test
20%
Microslip
100%
Numerical Modeling
20%
Point Load
20%
Scale Analysis
20%
Semi-Analytical Approach
20%
Sliding Distance
20%
Stick-Slip
20%
Strand
100%
Stress Field
20%
Subsurface
20%
Material Science
Finite Element Method
25%
Fretting
25%
Fretting Fatigue
25%
Microslip
100%
Semi-Analytical Method
100%
Stress Field
25%