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Author: Evgeniy A. Panin

  • MATHEMATICAL MODELLING OF TECHNOLOGICAL PROCESSES AND SYSTEMS

    Modelling of combined thermomechanical processing of stainless steel wire

    • Irina E. Volokitina
    • Andrey V. Volokitin
    • Evgeniy A. Panin
    Mathematical Modeling, Vol. 8 (2024), Issue 1, pg(s) 10-13
    • Abstract
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    In this article, a number of theoretical studies have been conducted on a new combined process of multicycle thermomechanical processing, including wire drawing and subsequent cooling in liquid nitrogen. When analyzing the deformation, it was found that the presence of intermediate heating to ambient temperature allows calculating the force according to the Krasilshchikov formula and the wellknown nomogram of the tensile strength of AISI-316 steel at 20°C with minimal errors. The lack of heating leads to the fact that the second and third drawing cycles take place at partially negative temperatures in the workpiece section. This leads to an increase in the difference in the force values obtained by calculation and during modeling. To be able to use the Krasilshchikov formula and the nomogram of the tensile strength of AISI-316 steel at 20°C, it is necessary to adjust the resulting force values by increasing by about 30% for a diameter of 6 mm and 20% for a diameter of 9 mm in the absence of heating of the workpiece and by 35% for a diameter of 6 mm and 25% for a diameter of 9 mm in in case of preheating the workpiece.

  • MATHEMATICAL MODELLING OF TECHNOLOGICAL PROCESSES AND SYSTEMS

    Modelling of the new route drawing technology for a metal processing efficiency

    • Irina E. Volokitina
    • Abdrakhman B. Naizabekov
    • Andrey V. Volokitin
    • Oxana Y. Salko
    • Valery V. Chigirinsky
    • Evgeniy A. Panin
    Mathematical Modeling, Vol. 6 (2022), Issue 3, pg(s) 82-83
    • Abstract
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    The results of finite element modeling of a new method with an increased metal processing level were considered. The improvement of the drawing process was achieved by changing the usual scheme of metal movement during deformation, which made it possible to achieve large strains compared to the standard drawing scheme. It is established that step drawing has the advantage of an increased processing level, but it leads to the formation of an inhomogeneous gradient strain.

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