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- W157499714 abstract "Recrystallization in association with hot working can be static, dynamic or metadynamic in nature. While dynamic recrystallization, if such occurs, is important as regards the shape of the flow curve, the microstructure evolution during industrial hot working is determined largely by static and/or metadynamic processes proceeding during pauses between deformation steps and after the termination of hot working. The principles of microstructure evolution models, which have a base in laboratory data for recrystallization, grain growth and static recovery but which can be applied to complex hot working procedures, are described. Such treatments are shown to provide an acceptably accurate prediction of the microstructural changes engendered during some real hot working operations. A review is given of methods whereby multi-step flow curves relevant to hot working can be described in terms of single-step flow stress data, such as can be obtained in a laboratory. Such evaluations seem to be promising as a basis for more accurate calculations of load/pressure requirements for hot working, which in turn are a prerequisite for improved process control in industrial plant." @default.
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- W157499714 date "1986-01-01" @default.
- W157499714 modified "2023-10-16" @default.
- W157499714 title "Microstructure Evolution and Flow Stress During Hot Working" @default.
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- W157499714 doi "https://doi.org/10.1016/b978-0-08-031640-6.50016-5" @default.
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