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The effects of a ferritic or martensitic matrix on the tensile behavior of a nano-precipitation strengthened ultra-low carbon Ti–Mo–Nb steel
journal contribution
posted on 2021-01-13, 00:00 authored by M Cai, L Chen, K Fang, H Huang, Peter HodgsonPeter HodgsonThe effects of a ferritic or martensitic matrix on the tensile behavior of a nano-precipitation strengthened ultra-low carbon Ti–Mo–Nb steel
History
Journal
Materials science and engineering AVolume
801Article number
140410Pagination
1 - 8Publisher
ElsevierLocation
Amsterdam, The NetherlandsPublisher DOI
ISSN
0921-5093eISSN
1873-4936Language
EnglishPublication classification
C1 Refereed article in a scholarly journalUsage metrics
Keywords
Science & TechnologyTechnologyNanoscience & NanotechnologyMaterials Science, MultidisciplinaryMetallurgy & Metallurgical EngineeringScience & Technology - Other TopicsMaterials ScienceUltra-low carbon steelNano-precipitationTempered martensiteDeformation behaviorStrengthening mechanismX-RAY-DIFFRACTIONINTERPHASE PRECIPITATIONMECHANICAL-PROPERTIESCARBIDE PRECIPITATIONDISLOCATION DENSITYMICROALLOYED STEELLATH MARTENSITEHSLA STEELSTEMPERATUREAUSTENITEMechanical Engineering