Microstructures and Mechanical Properties of Steels and Alloys Subjected to Large-Strain Cold-to-Warm Deformation
Микроструктуры и механические свойства сталей и сплавов, подвергнутых холодно-теплой деформации с большими степенями деформации
2022-03-08
SCID: 54.1/w3vmnw7t
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continuous dynamic recrystallizationlarge-strain deformationmicrostructure evolutionstructural strengtheningultrafine-grained microstructure
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Abstract (AI)
The effect of large-strain cold-to-warm deformation on the microstructures and mechanical properties of various steels and alloys is critically reviewed. The review is mainly focused on the microstructure evolution, whereas the deformation textures are cursorily considered without detailed examination. The deformation microstructures are considered in a wide strain range, from early straining to severe deformations. Such an approach offers a clearer view of how the deformation mechanisms affect the structural changes leading to the final microstructures evolved in large strains. The general regularities of microstructure evolution are shown for different deformation methods, including conventional rolling/swaging and special techniques, such as equal channel angular pressing or torsion under high pressure. The microstructural changes during deformations under different processing conditions are considered as functions of total strain. Then, some important mutual relationships between the microstructural parameters, e.g., grain size vs. dislocation density, are revealed and discussed. Particular attention is paid to the mechanisms of microstructure evolution that are responsible for the grain refinement. The development of an ultrafine-grained microstructure during large strain deformation is considered in terms of continuous dynamic recrystallization. The regularities of the latter are discussed in comparison with conventional (discontinuous) dynamic recrystallization and grain subdivision (fragmentation) phenomenon. The structure–property relations are quantitatively represented for the structural strengthening, taking into account various mechanisms of dislocation retardation.
Key Findings
1
Comparable microstructure-evolution trends are examined across conventional rolling and swaging, equal channel angular pressing, and high-pressure torsion.
2
Microstructural changes are analyzed over a wide strain range, linking early deformation mechanisms to final structures under severe deformation.
3
Quantitative structure–property relationships describe structural strengthening while accounting for multiple mechanisms of dislocation retardation.
4
Relationships between microstructural parameters, including grain size and dislocation density, are revealed as functions of total strain and processing conditions.
5
The review identifies general regularities in microstructure evolution across steels and alloys subjected to large-strain cold-to-warm deformation.
6
Ultrafine-grained structures are interpreted primarily through continuous dynamic recrystallization, contrasted with discontinuous dynamic recrystallization and grain subdivision.
Research Object
Various steels and alloys subjected to large-strain cold-to-warm deformation
Research Subject
Microstructure evolution, grain-refinement mechanisms, and the resulting mechanical properties and structure–property relationships
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2022-03-08
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