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
DL-EPR measurements on a sensitised Type 304 stainless steel pipe section
Juha-Matti Autio
, Ulla Ehrnsten
Research output
:
Book/Report
›
Report
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'DL-EPR measurements on a sensitised Type 304 stainless steel pipe section'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
304 Stainless Steel pipe
100%
At a Distance
25%
Degree of Sensitization
50%
Distance Function
25%
DL-EPR
100%
EPR Measurements
100%
Failure Mode
25%
Fusion Line
100%
Incomplete Knowledge
25%
Intergranular Stress Corrosion Cracking (IGSCC)
100%
Knowledge Transfer
25%
Low Carbon
25%
Material Type
25%
Pipe Section
100%
Primary piping
50%
Repair Welding
25%
Residual Stress
25%
SAFIR
25%
Stainless Steel
25%
Steam Atmosphere
25%
Steam Line
25%
Stress Corrosion Cracking
25%
SUS304 Stainless Steel
100%
Third Factor
25%
Three-parameter
25%
Water Chemistry
25%
INIS
bwr type reactors
75%
carbon
25%
cracking
50%
cracks
100%
distance
50%
environment
75%
failures
25%
investigations
25%
pipes
100%
repair
75%
residual stresses
25%
stainless steel-304
100%
stainless steels
25%
steam
25%
steam lines
25%
stress corrosion
50%
transfer of knowledge
25%
values
50%
water chemistry
25%
welding
75%
welds
50%
Engineering
Deep Learning Method
100%
Failure Mode
25%
Fusion Line
100%
Material Stress
25%
Pipe Section
100%
Residual Stress
25%
Stainless Steel
25%
Steam Piping Systems
25%
Steel Pipe
100%
Stress Corrosion Cracking
50%
Type 304 Stainless Steel
100%
Water Chemistry
25%
Welds
50%
Material Science
304 Stainless Steel
100%
Intergranular Stress Corrosion Cracking
100%
Materials Class
100%
Repair Welding
100%
Residual Stress
100%
Stainless Steel
100%
Stress Corrosion Cracking
100%
Chemical Engineering
Deep Learning Method
100%