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Theory of Industrial Forging and Alloys – 2nd Edition
This revised and expanded monograph presents a new approach to forging process design, grounded in the megoplastic deformation theory developed by A.K. Onishchenko. It focuses on transforming the initial macrostructure of ingots to maximize physical and mechanical properties in the direction of the highest working stresses in the part. The book introduces novel forging schemes for shafts, disks, and reactor shells, alongside production-implemented processes for ingots and billets weighing up to 360 tons.
Readers will find criteria for forgeability and stampability of steels and alloys, as well as the deformation mechanism of industrial steels and titanium alloys in a state of superplasticity. For the first time, a unified theory is presented explaining flake formation in steels and hydrogen embrittlement in titanium alloys.
The second edition includes minor additions to Chapters 2 and 3, plus a new Chapter 6 and Section 7.3 in Chapter 7. This work is intended for engineering, technical, and scientific professionals in the forging and stamping industry, and also serves as a resource for students and postgraduates specializing in metal forming technologies and machinery.