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Pre-test analyses for pressurized thermoshock tests. Vessel I
Heli Talja, Heikki Keinänen
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Dive into the research topics of 'Pre-test analyses for pressurized thermoshock tests. Vessel I'. Together they form a unique fingerprint.
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Keyphrases
Thermoshock
100%
Pre-test Analysis
100%
Finite Element Method
66%
Pressure Vessel
66%
Stress Intensity Factor
66%
Finland
33%
Analytical Formula
33%
Technical Research
33%
Pre-crack
33%
Crack Initiation
33%
Material Toughness
33%
Structural Integrity
33%
Code-based
33%
Crack Tip
33%
Computer Code
33%
Internal Pressure
33%
Fourier Series
33%
Pressure Transients
33%
Thermal Transient
33%
Stress Intensity
33%
Nuclear Engineering
33%
Loading Time
33%
Blunt Notch
33%
Factor Value
33%
Material Fracture
33%
Engineering Laboratory
33%
Simplified Calculation Method
33%
Fracture Initiation Toughness
33%
Influence Function Method
33%
Temperature Calculation
33%
Final Test
33%
Tip Temperature
33%
INIS
vessels
100%
flaws
100%
values
60%
comparative evaluations
60%
geometry
40%
finite element method
40%
laboratories
40%
pressure vessels
40%
cracks
40%
stress intensity factors
40%
assessments
20%
finland
20%
correlations
20%
calculation methods
20%
computer codes
20%
metals
20%
loading
20%
notches
20%
fractures
20%
crack propagation
20%
measured values
20%
nuclear engineering
20%
ussr
20%
Engineering
Test Analysis
100%
Stress-Intensity Factor
66%
Pressure Vessel
66%
Finite Element Analysis
66%
Technical Research Centre
33%
Measured Value
33%
Structural Integrity
33%
Good Correlation
33%
Fourier Series
33%
Final Test
33%
Calculated Temperature
33%
Crack Initiation
33%
Stress Intensity
33%
Crack Tip
33%
Internal Pressure
33%
Fracture Initiation
33%
Nuclear Engineering
33%
Material Science
Finite Element Methods
100%
Stress Intensity Factor
100%
Stress Intensity
50%
Crack Initiation
50%
Crack Tip
50%