Presents a new physical and mathematical theory of irreversible
deformations and ductile fracture of metals that acknowledges the
continuous change in the structure of materials during deformation
and the accumulation of deformation damage. Plastic deformation,
viscous destruction, evolution of structure, creep processes, and
long-term strength of metals and stress relaxation are described in
the framework of a unified approach and model. The author then
expands this into a mathematical model for determining the
mechanical characteristics of quasi-samples of standard mechanical
properties in deformed semi-finished products.
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