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Creep and creep-fatigue behaviour of 316 stainless steel
Stefan Holmström
*
,
Rami Pohja
, Asta Nurmela
,
Pekka Moilanen
, Pertti Auerkari
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
28
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Keyphrases
Creep
100%
Creep-fatigue
100%
Creep Strain
100%
316 Stainless Steel
100%
High Temperature
50%
Product Form
50%
Nuclear Power Plant
25%
Accuracy Improvement
25%
Yield Strength
25%
Temperature Range
25%
Steel Grade
25%
Strain Rate
25%
Austenitic Stainless Steel
25%
Creep Model
25%
Creep Rupture
25%
Life Fraction Rule
25%
Structural Materials
25%
Stress Dependence
25%
Life Prediction
25%
Life Safety
25%
Service Conditions
25%
Complex Product
25%
Stainless Steel 316
25%
316FR
25%
Design Prediction
25%
Wilshire Equations
25%
High-temperature Properties
25%
Fatigue Effect
25%
Strain Model
25%
Tertiary Creep
25%
Strain-controlled Fatigue
25%
Public Domain Data
25%
Engineering
Creep Strain
100%
Creep
100%
Fatigue Behavior
100%
Stainless Steel
100%
Steel Grade
25%
Temperature Range
25%
Nuclear Power Plant
25%
Life Prediction
25%
Creep Model
25%
Safe Life
25%
Service Condition
25%
Structural Materials
25%
Creep Rupture
25%
Austenitic Stainless Steel
25%
Strain Rate
25%
Tertiary Creep
25%
Yield Point
25%
Finite Element Analysis
25%
Temperature Property
25%
INIS
creep
100%
fatigue
100%
stainless steel-316
100%
strains
55%
data
22%
ruptures
22%
modeling
22%
high temperature
22%
steels
22%
applications
11%
design
11%
equations
11%
variations
11%
nuclear power plants
11%
prediction
11%
accuracy
11%
extrapolation
11%
yield strength
11%
temperature range
11%
strain rate
11%
austenitic steels
11%
structural materials
11%