Microstructure Evolution in Metal Forming Processes (Woodhead Publishing Series in Metals and Surface Engineering): Modelling and Applications - Hardcover

Book 47 of 58: Woodhead Publishing Series in Metals and Surface Engineering

Jianguo Lin

 
9780857090744: Microstructure Evolution in Metal Forming Processes (Woodhead Publishing Series in Metals and Surface Engineering): Modelling and Applications

Synopsis

Microstructure evolution in metal forming processes summarises the wealth of recent research on the mechanisms, modelling and control of microstructure evolution during metal forming processes. Part one reviews the general principles involved in understanding and controlling microstructure evolution in metal forming. Techniques for modelling microstructure and optimising processes are explored, along with recrystallisation, grain growth, and severe plastic deformation. Microstructure evolution in the processing of steel is the focus of part two, which reviews the modelling of phase transformations in steel, unified constitutive equations and work hardening in microalloyed steels. Part three examines microstructure evolution in the processing of other metals, including ageing behaviour in the processing of aluminium and microstructure control in processing nickel, titanium and other special alloys.

Key Features: summarises the wealth of recent research on the mechanisms, modelling and control of microstructure evolution during metal forming processes; comprehensively discusses microstructure evolution in the processing of steel and reviews the modelling of phase transformations in steel, unified constitutive equations and work hardening in microalloyed steels.

Contents: Part 1 General principles: Understanding and controlling microstructural evolution in metal forming: an overview; Techniques for modelling microstructure in metal forming processes; Modelling techniques for optimising metal forming processes; Recrystallisation and grain growth in hot working of steels; Severe plastic deformation for grain refinement and enhancement of properties. Part 2 Microstructure evolution in the processing of steel: Modelling phase transformations in steel; Determining unified constitutive equations for modelling hot forming of steel; Modelling phase transformations in hot stamping and cold die quenching of steels; Modelling microstructure evolution and work hardening in conventional and ultrafine-grained microalloyed steels. Part 3 Microstructure evolution in the processing of other metals: Microstructure control in creep-age forming of aluminium panels; Microstructure control in processing nickel, titanium and other special alloys.

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About the Author

Jianguo Lin is Professor of Mechanics of Materials in the Department of Mechanical Engineering at Imperial College London, UK. Daniel Balint is a Lecturer in the Department of Mechanical Engineering at Imperial College London, UK. Maciej Pietrzyk is Professor of Metallurgy and Materials Science and Head of the Department of Applied Computational Science and Modelling at the AGH University of Science and Technology, Poland.

"About this title" may belong to another edition of this title.