Otwarty dostęp

Predicting the Burnishing Force for Cylindrical Workpieces with Amodified Surface Layer


Zacytuj

[1] Masters, V.A., Berkovsky, V.S. “The theory of plastic deformation and pressure treatment of metals”, Moscow, Metallurgy, 1989. (in Russian) Search in Google Scholar

[2] Zaides, S. A., Emelyanov, V. N., Popov, M. E., “Deforming machining of shafts: monograph”, Irkutsk, ISTU publishing house, 2013. (in Russian) Search in Google Scholar

[3] Trofimov, V. N. “Improving the technology of drawing of long axisymmetric composite electric conductors”, PhD thesis, Institute of Economics and Economics (branch) of Izhevsk State Technical University, Glazov, 2015. (in Russian) Search in Google Scholar

[4] Garkanov. D. N., Melnikov, E. L., Babele, V., G. “Tribology based on self-organization”, Lambert Academic Publishing, 2015. (in Russian) Search in Google Scholar

[5] Shchedrin, A. V., Ulyanov, V. V., Bekaev, A. A., Skoromnov, V. M., Vanyushkina, M. S., Abramova, T. G., Khomyakova N.,V., Chikhacheva N. Yu. “Tribological Principles in the Systematic Design of Competitive Technological Equipment”, Repair, restoration, modernization 4, pp. 15 – 20, 2009.(in Russian) Search in Google Scholar

[6] Shchedrin, A. V., Kostryukov, A. A., Chihachova, N. Yu. “Artificial technological intelligence as the ideological basis of the generalized system of materials processing methods”, Strengthening technologies and coatings 6, pp. 20 – 26, 2015. (in Russian) Search in Google Scholar

[7] Yaroslavtsev, V. M. “Development and practical implementation of methodology of search of new methods of material processing”, Bulletin of the Moscow State Technical University, N.E. Bauman, Series Mechanical Engineering 2, pp. 56 – 70, 2007.(in Russian) Search in Google Scholar

[8] Dzyura, V., Maruschak, P., Tkachenko, I., Kuchvara, I. “Ensuring a Stable Relative Area of Burnishing of Partially Regular Microrelief Formed on End Surfaces of Rotary Bodies”, Strojnícky časopis – Journal of Mechanical Engineering 71 (1), pp.41 – 50, 2021. DOI: 10.2478/scjme-2021-000410.2478/scjme-2021-0004 Search in Google Scholar

[9] Shchedrin, A. V., Gavrilov, S. A., Erokhin, V. V., Yerokhin, V. V., Biryukov, A. I., Yushin, D. I. “Improving quality and productivity of methods combined machining by tools with regular surface microgeometry using metal-cladding lubricants”, Uprochnyayushchie Tekhnol. Pokrytiya 8, pp. 21 – 25, 2011. (in Russian) Search in Google Scholar

[10] Gavrilov S. A. “Improvement of surface plastic deformation process using metal-cladding lubricants”, Friction and lubrication in machines and mechanisms 4, pp. 33 – 39, 2013. (in Russian) Search in Google Scholar

[11] Shсhedrin, A. V., Kozlov A. Yu., Kostryukov, A. A. “Improvement of the covering surface plastic deformation due to the regularization of microgeometry of the surface of the workpiece”, Strengthening technologies and coatings 13 (4), pp. 162 – 168, 2017. (in Russian) Search in Google Scholar

[12] Shchedrin, A. V., Kostryukov, A. A. “Application of tribotechnology based on self-organization for the systematic improvement of the processes of cold plastic deformation”, Strengthening technologies and coatings 13 (11), pp. 495 – 499, 2017. (in Russian) Search in Google Scholar

[13] Šofer, M., Fajkoš, R., Halama, R. “Influence of Induction Hardening on Wear Resistance in Case of Rolling Contact”, Strojnícky časopis – Journal of Mechanical Engineering 66 (1), pp. 17 – 26, 2016. DOI: 10.1515/scjme-2016-000710.1515/scjme-2016-0007 Search in Google Scholar

[14] Shсhedrin, A. V., Kozlov, A. Yu. “Improving the use of technology metalplating lubricants covering methods of surface plastic deformation tool with regular microgeometry”, Strengthening technologies and coatings 3, pp. 8 – 12, 2014. (in Russian) Search in Google Scholar

[15] Shchedrin, A. V., Kostryukov, A. A., Mel’nikov, E. L., Lavrinenko, V. Yu., Aleshin, V. F., Chikhacheva, N. Yu. “Perfection of covering surface plastic deformation of billets from aluminum alloys”, Strengthening technologies and coatings 14 (7), pp. 291 – 296, 2018. (in Russian) Search in Google Scholar

[16] Melnikov, E. L., Shchedrin, A. V., Kostryukov, A. A., Seryozhkin, M. A., Stupnikov, V. P., Stupnikov V. V., Patent No. 2647057, Russian Federation, IPC В24В39/00, “Method of cold plastic deformation of metals”, Applicant and patent of MGTU named after N.E. Bauman. Stated 05/30/2017. Published 03/13/2018. Bul.No.8. (in Russian) Search in Google Scholar

[17] Kucheryaev, B. V., Nikolaev, R. A., Zhukova, E. A. “Calculation of energy parameters of the process of drawing rods”, Publishing House “Nauka & Technology”, Proizvodstvo Prokata (Rolled Products Manufacturing) 6, pp. 30 – 33, 2006. (in Russian) Search in Google Scholar

[18] Abramov, A. N., Semenov, V. I., Shuster, L. Sh. “Mathematical modeling of the process of drawing”, Forging and stamping production, metal forming 9, pp. 33 – 36, 2003. (in Russian) Search in Google Scholar

[19] Osadchy, V. Ya., Vorontsov, A. L. “Formula to calculating the drawing stress of round solid profiles”, Publishing House “Nauka & Technology”, Proizvodstvo Prokata (Rolled Products Manufacturing) 6, pp. 3 – 8, 2001. (in Russian) Search in Google Scholar

[20] Guryanov, G. N. “Reserves of energy saving during cold drawing of steel wire”, http://www.imet.ru/STAL, Stal 12, pp. 53 – 54. 2009. (in Russian) Search in Google Scholar

[21] Deordiev, N. T., Korobkin, V. D., Chudakov, P. D. “Plastic flow of hardening material in a conical matrix”, Forging and stamping production, metal forming 1, pp. 8 – 10, 1970. (in Russian) Search in Google Scholar

[22] Shchedrin, A. V., Gavrilov, S. A., Kosarev, I. V., Smolkina, T. V., Zinin, M. A., Sergeev, E. S. “Formation of foci of deformation in the surrounding surface plastic deformation”, Friction and lubrication in machines and mechanisms 10, pp. 3 – 7, 2014. (in Russian) Search in Google Scholar

[23] Kuznetsov, V. A., Sсhedrin, A. V., Gavrilov, S. A., Voronkov, V. I., Mel’nikov, E. L. “Theoretical and experimental researches of encompassing superficial plastic deformation method in conditions of using of metal-cladding lubricants”, Strengthening technologies and coatings 2, pp. 11 – 17, 2014. (in Russian) Search in Google Scholar

[24] “Metal-containing oil-soluble composition for lubricant materials”, patent for an invention, https://patents.google.com/patent/RU2277579C1/en Search in Google Scholar

[25] Lidorenko, N. S. “Scientific discovery”, Association of the authors of scientific discoveries of the USSR 41, Reg. 21, Diploma No. 41, Moscow, 1996. (in Russian) Search in Google Scholar

[26] Chebda, M., Chichinadze, A. V. “Handbook of tribotechnology. Lubricants, lubrication technology, sliding and rolling bearings”, “Engineering “, vol. 2, Moscow, 1990. (in Russian) Search in Google Scholar

eISSN:
2450-5471
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Engineering, Mechanical Engineering, Fundamentals of Mechanical Engineering, Mechanics