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Coated surface design by modelling and simulation
Helena Ronkainen
, Kenneth Holmberg
,
Anssi Laukkanen
Research output
:
Contribution to conference
›
Conference article
›
Scientific
Overview
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Dive into the research topics of 'Coated surface design by modelling and simulation'. Together they form a unique fingerprint.
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Keyphrases
Diamond-like
100%
Carbon Coating
100%
Coated Surface
100%
Surface Design
100%
Titanium Nitride
66%
Diamond Tip
66%
First Crack
66%
Steel Sample
33%
Steel Surface
33%
Finite Element Method Model
33%
Coated Steel
33%
Scratch Test
33%
Surface Coating
33%
Two-directional
33%
Elastic Modulus
33%
Fracture Toughness
33%
Fracture Behavior
33%
Coating Thickness
33%
Contact Surface
33%
Friction Performance
33%
Stress Distribution
33%
Coating Performance
33%
Stress Concentration
33%
Titanium Nitride Coating
33%
Low Friction
33%
3D FEM
33%
High Temperature Wear Resistance
33%
Three Dimensional Model
33%
Sliding Process
33%
Elastic Fracture
33%
Angular Crack
33%
Coating Design
33%
Crack Density
33%
Elastic-plastic Behavior
33%
Stress Components
33%
High Speed Steel
33%
First Principal Stress
33%
True Stress
33%
INIS
simulation
100%
surfaces
100%
design
100%
coatings
100%
modeling
100%
diamonds
62%
cracks
50%
carbon
37%
titanium nitrides
37%
performance
25%
applications
25%
steels
25%
density
12%
information
12%
data
12%
thickness
12%
friction
12%
concentration
12%
speed
12%
strains
12%
plastics
12%
distribution
12%
range
12%
finite element method
12%
fractures
12%
surface coating
12%
fracture toughness
12%
wear resistance
12%
Engineering
Diamond-Like Carbon
100%
Nitride
100%
Diamond
66%
Steel Sample
33%
Coated Steel
33%
Steel Surface
33%
Surface Coating
33%
Input Data
33%
Contacting Surface
33%
Coating Thickness
33%
Coating Performance
33%
Directional
33%
Crack Density
33%
Stress Component
33%
High-Speed Steel
33%
Three-Dimensional Models
33%
Stress Concentration
33%
Fracture Behavior
33%
Wear Resistance
33%
Modulus of Elasticity
33%
Finite Element Analysis
33%
Fracture Strength
33%
Material Science
Surface Design
100%
Surface (Surface Science)
100%
Nitride Compound
75%
Titanium
75%
Diamond-Like Carbon Coating
50%
Diamond
50%
Diamond-Like Carbon
25%
Fracture Toughness
25%
Elastic Moduli
25%
Fracture Behavior
25%
Surface Coating
25%
Wear Resistance
25%
Elastic-Plastic Behavior
25%
High Speed Steel
25%
Stress Concentration
25%
Density
25%
Finite Element Methods
25%