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Cleavage initiation in Ti-V-N and V-N microalloyed forging steels
Maria Balart
, Claire Davis
,
Martin Strangwood
, John Knott
Metallurgy and Materials
Research output
:
Contribution to journal
›
Article
4
Citations (Scopus)
Overview
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Dive into the research topics of 'Cleavage initiation in Ti-V-N and V-N microalloyed forging steels'. Together they form a unique fingerprint.
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Keyphrases
V-N Microalloying
100%
Microalloyed Forging Steel
100%
V-N Microalloyed Steel
100%
Ferrite-pearlite Structure
100%
V(CN)
66%
(Ti,V)C
66%
Non-metallic Inclusions
66%
Matrix Microstructure
66%
Room Temperature
33%
Grain Boundary
33%
Fracture Initiation
33%
Lower Limb Strength
33%
Volume Fraction
33%
Aluminum Oxide
33%
Ferrite Layer
33%
Fracture Surface
33%
Microstructural Characteristics
33%
Medium Carbon
33%
Forged Steel
33%
Resulfurized
33%
Morphological Variation
33%
Charpy Impact Test
33%
Brittle Fracture
33%
Matrix Effect
33%
Grain Boundary Ferrite
33%
Mn-Al
33%
High Matrix
33%
Bainitic Microstructure
33%
Pearlite Colony
33%
Allotriomorphic Ferrite
33%
Inclusion Morphology
33%
V-Ti
33%
Multiphase Inclusions
33%
Matrix Strength
33%
N-containing Compounds
33%
Volume Size
33%
Silicate Inclusions
33%
TiCN
33%
Engineering
Microalloyed
100%
Pearlite Microstructure
100%
Nonmetallic Inclusion
66%
Room Temperature
33%
Fracture Initiation
33%
Pearlite
33%
Fracture Surface
33%
Microstructural Feature
33%
Charpy Impact Test
33%
Brittle Fracture
33%
Deoxidized Steel
33%
Bainitic Microstructure
33%
Material Science
Non-Metallic Inclusions
100%
Grain Boundary
100%
Surface (Surface Science)
50%
Silicate
50%
Aluminum Oxide
50%
Volume Fraction
50%
Impact Testing
50%
Brittle Fracture
50%