[1]
E. Zadorozhnaya, V. Hudyakov, I. Dolgushin, Evaluation of Thermal Condition of Turbocharger Rotor Bearing Lecture Notes in Mechanical Engineering, (2020) 1183-1193.
DOI: 10.1007/978-3-030-22041-9_123
Google Scholar
[2]
I.G. Levanov, E.A. Zadorozhnaya, I.V. Mukhortov, M.O. Eschiganov, Study of effect of metal oleates on mixed and boundary lubrication Tribology in Industry, 42(3) (2020) 461-467.
DOI: 10.24874/ti.708.06.19.08
Google Scholar
[3]
M. Kandeva, Y.V. Rozhdestvensky, P. Svoboda, Z. Kalitchin, E. Zadorozhnaya, Influence of the size of silicon carbide nanoparticles on the abrasive wear of electroless nickel coatings. Part 2Journal of Environmental Protection and Ecology, 21 (1) (2020) 222-233.
Google Scholar
[4]
E. Zadorozhnaya, I. Levanov, M. Kandeva, Tribological research of biodegradable lubricants for friction units of machines and mechanisms: Current state of research Lecture Notes in Mechanical Engineering, 0(9783319956299) (2019) 939-947.
DOI: 10.1007/978-3-319-95630-5_98
Google Scholar
[5]
E.Levanov, D. Zadorozhnaya, Influence of friction geo-modifiers on HTHS viscosity of motor oils Lecture Notes in Mechanical Engineering, 0(9783319956299) (2019) 967-972.
DOI: 10.1007/978-3-319-95630-5_101
Google Scholar
[6]
I. V. Kolesnikov, A. M. Mukutadze, and V. V. Avilov 2018 Ways of Increasing Wear Resistance and Damping Properties of Radial Bearings with Forced Lubricant supply Proceedings of the 4th Int.l Conf. on Industrial Engineering, Lecture Notes in Mechanical Engineering (ICIE 2018) 1049–1062.
DOI: 10.1007/978-3-319-95630-5_110
Google Scholar
[7]
M. A. Mukutadze Radial bearing with porous elements, Procedia Engineering. 150 (2016) 559–570.
DOI: 10.1016/j.proeng.2016.07.041
Google Scholar
[8]
M. A. Mukutadze, D. U. Khasyanova Optimization of the Supporting Surface of a Slider Bearing according to the Load-Carrying Capacity Taking into Account the Lubricant Viscosity Depending on Pressure and Temperature Journal of Machinery Manufacture and Reliability, , 4 (2018) 356-361.
DOI: 10.3103/s1052618818040106
Google Scholar
[9]
M. A. Mukutadze, D. U. Khasyanova Radial Friction Bearing with a Fusible Coating in the Turbulent Friction Mode Journal of Machinery Manufacture and Reliability 48 (2019) 423-432.
DOI: 10.3103/s1052618819050066
Google Scholar
[10]
M. A. Mukutadze, A.M. Mukutadze, V.V. Vasilenko Simulation model of thrust bearing with a free-melting and porous coating of guide and slide surfaces IOP Conf. Series: Materials Science and Engineering 560 (2019).
DOI: 10.1088/1757-899x/560/1/012031
Google Scholar
[11]
M. A. Mukutadzea, D. U. Khasyanovab, A. M. Mukutadzea Hydrodynamic Model of a Wedge-Shaped Sliding Support with an Easy-Melting Metal Coating, Journal of Machinery Manufacture and Reliability, 49(4) (2020) 314–320.
DOI: 10.3103/s105261882004010x
Google Scholar
[12]
M.A. Mukutadze, E.O. Lagunova, A.N. Garmonina, V.V. Vasilenko Radial Slip Bearing with a Pliable Supporting Surface, Russian Engineering Research, 38(3) (2018) 166-171.
DOI: 10.3103/s1068798x18030115
Google Scholar
[13]
М. А. Mukutadze, A. V. Morozova, A. N. Opatskikh, N. S. Zadorozhnaya Mathematical model of a journal bearing with low-melting and porous coating in its structure on different contacting surfaces with incomplete filling of operating clearance, IOP Conf. Series: Materials Science and Engineering 1064 (2021) 012030.
DOI: 10.1088/1757-899x/1064/1/012030
Google Scholar
[14]
М. А. Mukutadze, A. M. Mukutadze, A. N. Opatskikh, M. V. Novakovich, V. I. Poltinnikov Mathematical model of a micropolar lubricating stuff, IOP Conf. Series: Materials Science and Engineering 1061 (2021) 012027 IOP Publishing.
DOI: 10.1088/1757-899x/1061/1/012027
Google Scholar
[15]
М. А. Mukutadze, A. V. Morozova, A. N. Opatskikh, E. V. Kruchinina Simulation Model of a Journal Bearing with a LowMelting and Porous Coating in the Structure on Different Contact Surfaces, International Multi-Conference on Industrial Engineering and Modern Technologies (FarEastCon-2020).
DOI: 10.1109/fareastcon50210.2020.9271268
Google Scholar
[16]
M.E. Bondarenko, R.N. Polyakov, Li. Shengbo, Controlling the characteristics of the hybrid bearing by means of an electromagnetic actuator IOP Conference Series: Materials Science and Engineering, 1001(1) (2020) 012078,.
DOI: 10.1088/1757-899x/1001/1/012078
Google Scholar
[17]
R.N. Polyakov, A.A. Revkov, Fu Shengping, LI. Shengbo Toroidal variator with hydro-gas pressure mechanism for creating a holddown IOP Conference Series: Materials Science and Engineering, 1001(1) (2020) 012003,.
DOI: 10.1088/1757-899x/1001/1/012003
Google Scholar
[18]
FU Sheng-ping, LI Sheng-bo, LUO Ning, R. N. Polyakov Metamorphic mechanism of wet shift clutch in gear shifting process Journal of ZheJiang University (Engineering Science) 53(4) (2019) 628-637.
Google Scholar
[19]
R.N. Polyakov, A.V. Kornaev, M.E. Bondarenko, D.V. Shutin, Design features of hybrid bearings with adjustable stiffness IOP Conference Series: Materials Science and Engineering 734 (2020) 012080.
DOI: 10.1088/1757-899x/734/1/012080
Google Scholar
[20]
A.M. Mukutadze Coefficient of a rolling motion bearing drive, Procedia Engineering 150 (2016) 547–558.
DOI: 10.1016/j.proeng.2016.07.040
Google Scholar
[21]
K.S. Akhverdiev, N.S. Zadorozhnaya, A.M. Mukutadze, B.M. Flek Computation model of composite cylindrical bearing working in steady-state regime for partial filling of gap with lubricant material Journal of Machinery Manufacture and Reliability 45(3) (2016) 247–251.
DOI: 10.3103/s105261881603002x
Google Scholar
[22]
K.S. Akhverdiev, A.M. Mukutadze Research of Drive Factor of Damper with Double-Layer Porous Ring with Compound Feed of Lubricant Material International Journal of Applied Engineering Research 1 (2017) 76–85.
Google Scholar