Skip to main navigation
Skip to search
Skip to main content
VTT's Research Information Portal Home
Search content at VTT's Research Information Portal
Home
Profiles
Research output
Projects
Datasets
Research units
Research Infrastructures
Activities
Prizes
Press/Media
Impacts
A descriptive model of wear evolution in rolling bearings
Idriss El-Thalji
, Erkki Jantunen
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
150
Link opens in a new tab
Citations (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'A descriptive model of wear evolution in rolling bearings'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Wear Evolution
100%
Rolling Bearing
100%
Descriptive Model
100%
Wear Progress
83%
Wear Mechanism
66%
Evolution Process
33%
Rolling Contact Wear
33%
Steady State
16%
Condition Monitoring
16%
Most Probable
16%
Physical Phenomena
16%
Abrasive
16%
Stress Concentration
16%
Concentration Mechanism
16%
Debris
16%
Wear Interaction
16%
Defect Damage
16%
Defect Propagation
16%
Transition Events
16%
Condition Prognosis
16%
Design Condition
16%
Damage Growth
16%
Surface Topology
16%
Topology Change
16%
Evolution Stage
16%
Five-stage
16%
Defect Initiation
16%
INIS
wear
100%
rolling
100%
interactions
23%
monitoring
11%
defects
11%
surfaces
5%
design
5%
concentration
5%
steady-state conditions
5%
topology
5%
growth
5%
modeling
5%
range
5%
damage
5%
inclusions
5%
monitors
5%
fatigue
5%
lifetime
5%
fluctuations
5%
adhesives
5%
abrasives
5%
Nursing and Health Professions
Influencing Factor
100%
Adhesive Agent
100%
Material Science
Rolling Contact Wear
100%
Stress Concentration
50%