High strength steel (600–900 MPa) deposited metals: microstructure and mechanical properties
Tianjiao Zhang, Z. Li, Shengqiang Ma, S. Kou, Huirong Jing
Abstract
Tianjiao Zhang, Z. Li, Shengqiang Ma, S. Kou, Huirong Jing
Abstract
The microstructure and mechanical properties of the deposited metals of five metal cored wires for welding 600–900 MPa ultralow carbon bainitic steels were investigated. It was found that lowering the C content and optimising the Mn, Ni, Mo and Cr contents of the deposited metal significantly improved the strength and toughness. At the lowest strength level (627 MPa), ferrite dominated, mainly acicular ferrite and proeutectoid ferrite. However, at the highest strength level (>800 MPa), bainite dominated, mainly degenerate upper bainite and granular bainite. Good strength toughness match was achieved by a deposited metal having an interlaced multiphase microstructure with degenerate upper bainite and martensite acting as main strengthening phases, and granular bainite and acicular ferrite acting as toughening phases.
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The microstructure and mechanical properties of the deposited metals of five metal cored wires for welding 600–900 MPa ultralow carbon bainitic steels were investigated. It was found that lowering the C content and optimising the Mn, Ni, Mo and Cr contents of the deposited metal significantly improved the strength and toughness. At the lowest strength level (627 MPa), ferrite dominated, mainly acicular ferrite and proeutectoid ferrite. However, at the highest strength level (>800 MPa), bainite dominated, mainly degenerate upper bainite and granular bainite. Good strength toughness match was achieved by a deposited metal having an interlaced multiphase microstructure with degenerate upper bainite and martensite acting as main strengthening phases, and granular bainite and acicular ferrite acting as toughening phases.
Key concepts: Bainite, Acicular ferrite, Materials science, Microstructure, Ferrite (magnet), Metallurgy, Toughness, Martensite