Effect of submicrocrystalline state on strength and impact toughness of low-carbon 12GBA steel

被引:0
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作者
I. M. Safarov
A. V. Korznikov
S. N. Sergeev
S. V. Gladkovskii
E. M. Borodin
机构
[1] Russian Academy of Science,Institute of Problems of Metal Superplasticity
[2] Russian Academy of Sciences,Institute of Engineering Science, Ural Branch
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关键词
submicrocrystalline materials; low carbon steel; impact toughness; brittle-ductile transition;
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摘要
The effect of intense warm deformation on the structure and mechanical properties of low-carbon 12GBA steel was investigated. A submicrocrystalline (SMC) structure with an average element size of 0.3 μm was formed in the steel by isothermal overall forging. The formation of the SMC structure resulted in a sharp increase in strength by a factor of two to three in relation to the initial coarse-grained state while retaining a sufficient level of plasticity and impact toughness. After further annealing, steels exhibit an improved set of properties; i.e., as the strength decreases slightly, the plasticity increases sharply. Impact tests at low temperatures have shown the significant advantage of the SMC state of the steel over the coarse-grained state in the impact toughness. It is established that the cold resistance in the SMC state increases because the crack propagation prevails in the overall sample fracture.
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页码:1001 / 1006
页数:5
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