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Weldability of accelerated-cooled (AcC) high strength TMCP steel X80
Pekka Nevasmaa
, Mark Cederberg
, Martti Vilpas
Research output
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Book/Report
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Report
Overview
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Dive into the research topics of 'Weldability of accelerated-cooled (AcC) high strength TMCP steel X80'. Together they form a unique fingerprint.
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INIS
energy
100%
steels
100%
haz
100%
weldability
100%
welds
66%
welding
66%
welded joints
66%
metals
50%
heat
50%
simulation
33%
range
33%
pipes
33%
energy range
33%
values
16%
comparative evaluations
16%
levels
16%
data
16%
thickness
16%
hydrogen
16%
cracking
16%
plates
16%
fillers
16%
implants
16%
carbon 20
16%
mechanical tests
16%
cooling time
16%
Keyphrases
High Strength
100%
Weldability
100%
Arc Energy
100%
TMCP Steel
100%
Toughness
28%
Weld Metal
28%
Charpy-V
28%
Heat Input
28%
HAZ Toughness
28%
Energy Range
28%
Weldability Tests
28%
High Temperature
14%
Impact Energy
14%
Impact Toughness
14%
QT Steels
14%
Energy Value
14%
Welded Joint
14%
Strength Level
14%
Filler Material
14%
Mechanical Testing
14%
Cooling Time
14%
Two-pass
14%
Welding Experiment
14%
Plate Thickness
14%
Toughness Requirements
14%
Mo-Ti
14%
Simulated HAZ
14%
Severe Disease
14%
Welding Thermal Simulation
14%
FCAW Process
14%
Weld Toughness
14%
Normalized Steel
14%
Butt-welded Joint
14%
Input Range
14%
High Heat Input
14%
X80 Steel
14%
Line Field
14%
Engineering
Welds
100%
Arc Energy
87%
Heat Input
37%
Charpy
25%
Surface Acoustic Wave
25%
Test Result
12%
Impact Toughness
12%
Impact Energy
12%
Test Data
12%
Mechanical Testing
12%
Filler Material
12%
Plate Thickness
12%
Consumables
12%
Line Pipe
12%
Cooling Time
12%
Thermal Simulation
12%
Calorific Value
12%
Material Science
Welded Joint
100%
Weldability
100%
Weld Metal
75%
Fracture Toughness
25%
Mechanical Testing
25%