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Volumn 41, Issue 13, 2010, Pages 3318-3325
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A new paradigm for designing high-fracture-energy steels
b
ARCELORMITTAL
(France)
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Author keywords
[No Author keywords available]
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Indexed keywords
BCC IRON;
BODY-CENTERED CUBIC;
CARBON CONTENT;
CHARPY IMPACT ENERGY;
CHARPY IMPACT FRACTURE;
CRYOGENIC TEMPERATURES;
DISLOCATION CONFIGURATIONS;
DISLOCATION MOBILITY;
DUCTILE-TO-BRITTLE TRANSITION;
HEXAGONAL CLOSE-PACKED;
HIGH STRENGTH;
HIGH TOUGHNESS;
HIGH-STRENGTH STEELS;
IMPACT TOUGHNESS;
LOW TEMPERATURES;
LOW-CARBON;
LOW-CARBON STEELS;
NANO SCALE;
OTHER APPLICATIONS;
PEIERLS STRESS;
PRECIPITATION HARDENING;
SOLUTE ATOMS;
THEORETICAL STUDY;
CHARPY IMPACT TESTING;
DUCTILITY;
FRACTURE;
FRACTURE ENERGY;
HIGH STRENGTH STEEL;
INTERMETALLICS;
LOW CARBON STEEL;
SCREW DISLOCATIONS;
SINGLE CRYSTALS;
FRACTURE TOUGHNESS;
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EID: 78049421950
PISSN: 10735623
EISSN: None
Source Type: Journal
DOI: 10.1007/s11661-010-0485-y Document Type: Article |
Times cited : (66)
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References (25)
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