Open Access
Issue
MATEC Web Conf.
Volume 298, 2019
International Conference on Modern Trends in Manufacturing Technologies and Equipment: Mechanical Engineering and Materials Science (ICMTMTE 2019)
Article Number 00117
Number of page(s) 7
DOI https://doi.org/10.1051/matecconf/201929800117
Published online 18 November 2019
  1. G.I. Skundin, V.N. Nikitin, Splined connections (Shlitsevyye soyedineniya), Mashinostroenie, (1981) [Google Scholar]
  2. V.P. Bagmutov, S.N. Parshev, N.G. Dudkina, I.N. Zakharov, Electromechanical processing: technological and physical foundations, properties, implementation (Elektromekhanicheskaya obrabotka: tekhnologicheskiye i fizicheskiye osnovy, svoystva, realizatsiya), Science, (2003) [Google Scholar]
  3. L.V. Fedorova A.V. Morozov, V.A. Freeling, Increasing the efficiency of electromechanical hardening of holes of smooth cylindrical movable joints experiencing a one-sided radial load (Povysheniye effektivnosti elektromekhanicheskogo uprochneniya otverstiy gladkikh tsilindricheskikh podvizhnykh soyedineniy, ispytyvayushchikh odnostoronnyuyu radial’nuyu nagruzku) Magazine “ Repair, restoration, modernization”. 8, 49-52 (2012) [Google Scholar]
  4. A.V. Morozov, G.D. Fedotov, Development of the classification of electromechanical processing of holes by a moving high-temperature strip source (Razrabotka klassifikatsii protsessov elektromekhanicheskoy obrabotki otverstiy dvizhushchimsya vysokotemperaturnym polosovym istochnikom) Magazine “Strengthening technologies and coatings”. 3, 44-50 (2015) [Google Scholar]
  5. A.V. Morozov, V.A. Freeling, N.I. Shamukov, Improving the wear resistance of holes of parts subject to bilateral wear using selective electromechanical hardening (Povysheniye iznosostoykosti otverstiy detaley, podverzhennykh dvustoronnemu iznosu, s pomoshch’yu selektivnogo elektromekhanicheskogo uprochneniya) Bulletin of the Ulyanovsk State Agricultural Academy. 4, 113-119 (2013) [Google Scholar]
  6. A.V. Morozov, G.D. Fedotov S.N. Petryakov, A.Yu. Gorshkov, D.R. Musharapov Features of the choice of tool for electromechanical machining of holes of machine parts a strip high-temperature source (Osobennosti vybora instrumenta dlya elektromekhanicheskoy obrabotki otverstiy detaley mashin polosovym vysokotemperaturnym istochnikom) Tidings of Tula State University. Technical science. 7(2), 258 – 268 (2016) [Google Scholar]
  7. L.V. Fedorova, S.K. Fedorov, A.A. Serzhant, V.V. Golovin, S.V. Systerov, Electromechanical Surface Hardening of Tubing Steels (Elektromekhanicheskoye uprochneniye trubnykh staley) Magazine “Metal Science and Heat Treatment”. 3, 41-43 (2017) [Google Scholar]
  8. A.V. Morozov, N.N. Gorev, D.R. Musharapov, Tool for electromechanical hardening of working surfaces of splined bushings (Instrument dlya elektromekhanicheskoy zakalki rabochikh poverkhnostey shlitsevykh vtulok) Patent RF, no. 2572677 (2016) [Google Scholar]
  9. A.V. Morozov, D.R. Musharapov, E.A. Tokmakov, Tool for electromechanical hardening of working surfaces of splined bushings (Instrument dlya elektromekhanicheskoy zakalki rabochikh poverkhnostey shlitsevykh vtulok) Patent RF, no. 2620533 (2017) [Google Scholar]
  10. A.V. Morozov, A.E. Abramov, D.R. Musharapov, Tool for electromechanical hardening of working surfaces of splined bushings (Instrument dlya elektromekhanicheskoy zakalki rabochikh poverkhnostey shlitsevykh vtulok) Patent RF, no. 167360 (2017) [Google Scholar]

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