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Creep-fatigue interaction rules for P91: MATTER – Deliverable D4.5
Rami Pohja
, Stefan Holmström
, K.-F. Nilsson
, W. Payten
, H.-Y. Lee
, J. Aktaa
Joint Research Centre (JRC), Petten
Australian Nuclear Science and Technology Organisation (ANSTO)
Korea Atomic Energy Research Institute (KAERI)
Karlsruhe Institute of Technology (KIT)
Research output
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Book/Report
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Keyphrases
Creep Damage
100%
Creep-fatigue Interaction
100%
Interaction Rule
100%
Interaction Diagram
75%
Creep-fatigue
50%
RCC-MRx
50%
Ductility Exhaustion
50%
Diagram Method
50%
Heat Exchanger
25%
Ductility
25%
Design Codes
25%
Material Properties
25%
Cyclic Softening
25%
P91 Steel
25%
Conservatism
25%
Holding Time
25%
Fatigue Damage
25%
Simplified Model
25%
Negative Impact
25%
Stress-driven
25%
Fatigue Experiment
25%
Excellent Performance
25%
Design Calculation
25%
Deformation Rate
25%
NH Code
25%
Diagram Model
25%
Creep Deformation
25%
INIS
interactions
100%
creep
100%
fatigue
100%
damage
62%
diagrams
37%
ductility
37%
applications
25%
design
25%
modifications
12%
performance
12%
data
12%
deformation
12%
sensitivity
12%
solids
12%
heat exchangers
12%
accuracy
12%
steels
12%
Material Science
Creep
100%
Creep-Fatigue Interaction
100%
Fatigue of Materials
14%
Fatigue Damage
14%
Materials Property
14%
Engineering
Creep
100%
Subsection
25%
Fatigue Damage
12%
Simple Model
12%
Design Code
12%
Negative Impact
12%
Exchanger
12%
Fatigue Life
12%
Design Calculation
12%
Hold Time
12%