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Surface Stress
100%
Steel Surface
100%
Coated Steel
100%
Surface Fracture
100%
Bonding Layer
100%
Surface Influence
100%
Tensile Stress
25%
Coated Surface
8%
Order of Magnitude
8%
Scratch Test
8%
Load Range
8%
Large Strain
8%
Thin Hard Coatings
8%
Coating-substrate Interface
8%
Friction Properties
8%
3D FEM
8%
High Modulus
8%
Physical Vapor Deposition
8%
Low Modulus
8%
Coating Design
8%
Coating Fracture
8%
Wear Properties
8%
High-speed Steel Substrate
8%
Contact Zone
8%
First Principal Stress
8%
High Stress Concentration
8%
Coating-substrate Adhesion
8%
Adhesion Enhancement
8%
Design Advice
8%
Engineering
Tensile Stress σ
100%
Coated Steel
100%
Steel Surface
100%
Fracture Surface
100%
Microlevel
50%
Substrate Interface
50%
High-Speed Steel
50%
E Modulus
50%
Stress Concentration
50%
Wear Property
50%
Physical Vapor Deposition
50%
Finite Element Analysis
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INIS
layers
100%
surfaces
100%
steels
100%
fractures
100%
coatings
66%
substrates
33%
thickness
25%
comparative evaluations
16%
interfaces
16%
range
16%
simulation
8%
tools
8%
levels
8%
geometry
8%
design
8%
friction
8%
wear
8%
concentration
8%
speed
8%
strains
8%
adhesion
8%
finite element method
8%
zones
8%
exercise
8%
tin
8%
physical vapor deposition
8%
Material Science
Surface Stress
100%
Surface (Surface Science)
100%
Ultimate Tensile Strength
75%
Hard Coating
25%
Physical Vapor Deposition
25%
High Speed Steel
25%
Wear Property
25%
Stress Concentration
25%
Finite Element Methods
25%