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This book presents the results of mathematical modeling of the mechanical properties and structure of high-alloy ingot, powder metal systems, and tool steels during isothermal deformation and superplastic forming. It examines the processes of upsetting bulk and sheet thin-layer metal workpieces, as well as the mechanisms of hydrogen cracking in metals and alloys. The work also covers nanostructured and composite materials of various natures, discussing ultradispersed powder and compact nanocrystalline, nanoamorphous, and microcrystalline metal alloys and compounds. Their structural state, production technologies, and application areas are explored. Quantitative assessments are provided for nucleation processes and the formation of point defects in the crystalline structure of certain metal systems under various conditions and states. This resource is intended for researchers and engineers in materials science, metal physics, and mechanical engineering technology, and may also be useful for students and instructors training specialists at various levels.