The mathematical modeling for assessing the effectiveness of hot forging extruded round in plan forgings on crank presses

  • Authors

    • I V. Telegin
    • I M. Volodin
    • P I. Zolotukhin
    https://doi.org/10.14419/ijet.v7i2.2.9896

    Received date: March 5, 2018

    Accepted date: March 5, 2018

    Published date: March 5, 2018

  • Hot Stamping, Metal Consumption, Billet, Forging.
  • Abstract

    The article presents the results of the development of a mathematical model for calculating the efficiency indices of technological schemes for hot volumetric stamping (GOSH) on crank hot-stamping presses (KGSHP) round in the forgings plan (for gear, pulley and other similar parts). Software solutions obtained on the basis of this model allow choosing from several variants of technological schemes the most effective for using it in production or further improvement.

  • References

    1. Forging and stamping: a Handbook. 4 T. T. 2. Hot forging. – 2nd ed. revised. and DOP. / Under the General editorship of E. I. Semenov. – M.: Mashinostroenie, 2010. – 720 p.
    2. Telegin V. V., Abdullah, M. N. Analysis of the impact on the dy-namics of crank press of technological schemes of forming/ Telegin V. V., Abdullah, M. N. // Proceedings of the Samara scientific center, Russian Academy of Sciences. 2010. Vol. 12. No. 4-3. P. 629-633.
    3. Telegin, I.V. A studying of metal fabrication blanks from long prod-ucts /I.V. Telegin // BEST: International Journal of Management, In-formation Technology and Engineering. – 2016. Vol. 4-11. P. 1 – 6.
    4. Volodin I.M., Telegin I.V. Study of influence of geometric parame-ters tool for hot volume stamping of orbicular in terms of forging on сrank press dynamics / I.M. Volodin, I.V. Telegin // Global Journal of Engineering Science and Researches Vol. 4-1. P. 57-61.
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  • How to Cite

    V. Telegin, I., M. Volodin, I., & I. Zolotukhin, P. (2018). The mathematical modeling for assessing the effectiveness of hot forging extruded round in plan forgings on crank presses. International Journal of Engineering and Technology, 7(2.2), 30-34. https://doi.org/10.14419/ijet.v7i2.2.9896