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Creep damage and expected creep life for welded 9-11% Cr Steels
Pertti Auerkari
*
, Stefan Holmström
, Juha Veivo
, Jorma Salonen
*
Corresponding author for this work
VTT (former employee or external)
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
28
Citations (Scopus)
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Keyphrases
Creep Life
100%
Chromium Steel
100%
Creep Damage
100%
Creep Cavitation
100%
Inspection Data
66%
Damage Evolution
66%
Precipitation Hardening
66%
High Temperature
33%
Heat Treatment
33%
Power Plant
33%
Low Alloy Steel
33%
Life Management
33%
Condition Monitoring
33%
Steam System
33%
Damage Mechanism
33%
High Temperature Steam
33%
Creep Testing
33%
X10CrMoVNb9-1
33%
Creep Strength
33%
Long-term Service
33%
Final Failure
33%
Multiaxiality
33%
Observed Damage
33%
Steam Line
33%
Creep Crack
33%
Slow Evolution
33%
Creep Failure
33%
Engineering Steel
33%
Expected Damage
33%
High Chromium Steel
33%
Damage Acceleration
33%
Ductile Steel
33%
Service Damage
33%
INIS
damage
100%
creep
100%
chromium steels
100%
inspection
50%
steels
50%
cavitation
37%
failures
25%
data
25%
precipitation hardening
25%
engineering
12%
management
12%
monitoring
12%
acceleration
12%
cracking
12%
heat treatments
12%
power plants
12%
guidelines
12%
testing
12%
welds
12%
low alloy steels
12%
steam systems
12%
steam lines
12%
Engineering
Creep
100%
Damage Evolution
33%
Tensiles
16%
Heat Treatment
16%
Steam System
16%
Creep Testing
16%
Damage Mechanism
16%
Final Failure
16%
Steam Piping Systems
16%
Welds
16%
Material Dependent
16%
Engineering
16%
Condition Monitoring
16%
Electric Power Plant
16%
High Strength Steels
16%
Creep Strength
16%
Material Science
Chromium
100%
Creep
100%
Damage Evolution
25%
Age Hardening
25%
Heat Treatment
12%
High Strength Steels
12%