<p>This article examines the technological aspects of producing high-strength, sparsely alloyed alloys using hot deformation. The primary focus is optimizing the alloy composition using inexpensive alloying elements, such as nickel oxide, to reduce production costs without compromising mechanical properties. The study also investigates the impact of hot deformation parameters, such as temperature and porosity, on the mechanical properties of the material. Additional plastic deformation improves the mechanical properties of the resulting steel. These findings can be applied to developing cost-effective materials for the automotive industry, mechanical engineering, and other sectors.</p>

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Production of sparingly alloyed high-strength hot-deformed alloys

  • R. V. Egorova

摘要

This article examines the technological aspects of producing high-strength, sparsely alloyed alloys using hot deformation. The primary focus is optimizing the alloy composition using inexpensive alloying elements, such as nickel oxide, to reduce production costs without compromising mechanical properties. The study also investigates the impact of hot deformation parameters, such as temperature and porosity, on the mechanical properties of the material. Additional plastic deformation improves the mechanical properties of the resulting steel. These findings can be applied to developing cost-effective materials for the automotive industry, mechanical engineering, and other sectors.