ArticleName |
Development of the theory of joint plastic deformation
of different metals during steel strip rolling |
ArticleAuthorData |
Nosov Magnitogorsk State Technical University, Magnitogorsk, Russia
M. A. Polyakova, Dr. Eng., Associate Prof., Prof., Dept. of Materials Processing Technologies, e-mail: m.polyakova@magtu.ru E. M. Golubchik, Dr. Eng., Associate Prof., Prof., Dept. of Materials Processing Technologies, e-mail: e.golubchik@magtu.ru E. V. Lopatina, Postgraduate Student, Dept. of Materials Processing Technologies, e-mail: lopatina.yekaterina2016@yandex.ru N. A. Trubnikov, Master’s Student, Dept. of Materials Processing Technologies, e-mail: nik.trubnikov.2001@mail.ru |
References |
1. Chukin M. V., Polyakova M. A. Milestones in the formation of the chair for Rolling and Drawing Production of Nosov Magnitogorsk State Technical University. Chernye Metally. 2023. No. 5. pp. 22–30. 2. Arkulis G. E. Joint plastic deformation of different metals. Moscow : Metallurgiya. 1964. 268 p. 3. Arkulis G. E., Dorogobid V. G. Theory of plasticity. Moscow : Metallurgiya. 1987. 351 p. 4. Arkulis G. E., Kuprin M. I. On the paths of development of progressive research. Theory and practice of hardware production: interuniversity collection. Sverdlovsk : UPI publication, 1988. pp. 3–5. 5. Zasukha P. F., Korschikov V. D., Bukhvalov O. B. Bimetallic rolled products. Moscow : Metallurgiya. 1970. 264 pp. 6. Smushkevich L. E. Approximation of the solution to the problem of bimetal pressing. Theory and practice of hardware production: interuniversity collection. Sverdlovsk : UPI publication, 1977. pp. 149–156. 7. Denisov P. I., Polyakov M. G., Nekit V. A., Chernov N. K., Murinova. T. A. Unevenness of layerby-layer deformations during strip cladding of the base with soft metal. Theory and practice of hardware production: interuniversity collection. Sverdlovsk : UPI publication, 1978. pp. 67–70. 8. Kalchenko A. A., Bukhinik G. V. Obtaining metallic adhesion between the components of a bimetallic steel-aluminum billet. Theory and practice of hardware production: interuniversity collection. Sverdlovsk : UPI publication, 1980. pp. 45–50. 9. Bukhinik G. V., Manchash R. I., Krylov A. I., Kurban V. V., Rybakov Yu. A. Study of the quality of steel-copper wire in the production process. Theory and practice of hardware production: interuniversity collection. Sverdlovsk : UPI publication, 1982. pp. 10–15. 10. Atkins A. G., Weinstein A. S. The deformation of sandwich materials. International Journal of Mechanical Sciences. 1970. Vol. 12, Iss. 7. pp. 641–657. 11. Mori K.-I., Bay N., Fratini L., Micari F., Tekkaya A. E. Joining by plastic deformation. CIRPS Annals – Manufacturing Technology. 2013. Vol. 62, Iss. 2. pp. 673–694. 12. Gladkovskii S. V., Trunina T. A., Kokovikhin E. A., Smirnova S. V. et al. Structural steel-aluminum sandwich composites based on low-carbon steel 006/IF. Metal Science and Heat Treatment. 2013. Vol. 55. pp. 3–7. DOI: 10.1007/s11041-013-9569-9 13. Akdesir M., Zhou D., Foadian F., Palkowski H. Study of different surface pre-treatment methods on bonding strength of multilayer aluminum alloys/steel clad material. International Journal of Engineering Research & Science. 2016. Vol. 2, Iss. 1. pp. 169–177. 14. Salikhyanov D. Contact mechanism between dissimilar materials under plastic deformation. Comptes Rendus Mécanique. 2019. Vol. 347, Iss. 8. pp. 588–600. 15. Poletskov P. P., Gulin A. E., Emaleeva D. G., Kuznetsova A. S. et al. Analysis of current research areas in the field of production of multifunctional materials for extreme operating conditions. Vestnik Magnitogorskogo gosudarstvennogo tekhnicheskogo universiteta imeni G. I. Nosova. 2021. Vol. 19. No. 3. pp. 109–114. 16. Chikishev D. N., Golubchik E. M., Tarasova K. A. Study of the influence of chemical composition on mechanical properties of two-phase steel NST780Kh for the purpose of economical alloying. Stal. 2021. No. 12. pp. 46, 47. 17. Kokovikhin Yu. I., Nikulin A. V. Features of plastic deformations of heterogeneous media. Theory and practice of processing of composite and solid materials. Magnitogorsk : MGMI publication, 1993. pp. 32–35. 18. Arkulis G. E. Identification of patterns of uniform joint deformation of dissimilar metals. Izvestiya vuzov. Chernaya metallurgiya. 1960. No. 3. pp. 30–36. 19. Arkulis G. E., Boyarshinov M. I. Conditions for uniform deformation during joint upsetting of dissimilar metals in the absence of external friction. Izvestiya vuzov. Chernaya metallurgiya. 1960. No. 1. pp. 121–123. 20. JMatPro. Practical software for material properties. Available at: www.sentesoftware.co.uk (accessed: 03.03.2024). 21. Schille J., Guo Z., Saunders N., Miodownik A. Modeling phase transformations and material properties critical to processing simulation of steels. Materials and Manufacturing Processes. 2011. Vol. 26. pp. 137–143. 22. Saunders N., Guo Z., Li X., Miodownik A. P., Schillé J.-Ph. Using JMatPro to model materials properties and behavior. JOM. 2003. Vol. 55, Iss. 12. pp. 60–65. 23. Fedoseeva E. M., Olshanskaya T. V. Thermokinetic calculation of the phase composition of welds of aluminum alloy 1420 of the Al-Mg-Li system. Part 1. Thermokinetic calculation of the phase composition of alloy 1420. Vestnik PNIPU. Mashinostroenie, materialovedenie. 2020. Vol. 22, No. 4. pp. 48–55. 24. Egorova Yu. B., Davydenko L. V., Chibisova E. V., Chelpanov A. V. Prediction of mechanical properties of VT6 titanium alloy rods with different types of structure. Tekhnologiya legkikh splavov. 2022. No. 3. pp. 30–40. |