[1]
I.A. Birger, others, The calculation of the strength of machine parts: a Handbook, Mashinostroenie, Moscow, (1993).
Google Scholar
[2]
M.N. Ivanov, V.A. Finogenov, Machine parts, Higher. Wk, Moscow, (2008).
Google Scholar
[3]
G. B. Iosilevich, Machine parts, Mashinostroenie, Moscow, (1988).
Google Scholar
[4]
F.L. Lytvyn, Theory of gearing, Science, Moscow, (1968).
Google Scholar
[5]
V.V. Eliseev, Mechanics of deformable solids. St. Petersburg State Polytechnical University, St. Petersburg, (2006).
Google Scholar
[6]
M.R. Bahrami, A. Ramezani, K. Osgouie, Modeling and Simulation of Non-Contact Atomic Force Microscope, Proceedings of the ASME 2010 10th conference on Engineering System Design and Analysis, ESDA 2010. Volume 5, (2010) 565-569.
DOI: 10.1115/esda2010-24394
Google Scholar
[7]
V.V. Eliseev, M.R. Bahrami, Diagnostic machine on the wires of power lines: the device and the problems of mechanics, Scientific and technical, statements SPbPU. Ser. Science and education, 1 (214), (2015) 200-207.
Google Scholar
[8]
V.V. Eliseev, M.R. Bahrami, Dynamics of electrical transmission conductor with a robot inspector with limited engine power, Theory of mechanisms and machines, № 4 (28), T. 13, (2015) 6-11.
Google Scholar
[9]
M.R. Bahrami, Mechanics of diagnostic machine on electrical transmission lines conductors, International Conference on Modern Trends in Manufacturing Technologies and Equipment 2018, MATEC Web of conferences, ICMTME 2018, 224, 02021 (2018).
DOI: 10.1051/matecconf/201822402021
Google Scholar
[10]
V.V. Eliseev, M.R. Bahrami, Strength of the suspension of a robot inspector on a power transmission line, Bulletin of Machine Building, № 6, (2016) 19-22.
Google Scholar
[11]
D.V. Kiryanov, Mathcad 14, BHW-Petersburg, St. Petersburg, (2007).
Google Scholar
[12]
V.V. Eliseev, M.R. Bahrami, The dynamics of the wires of power lines while driving a diagnostic machine, Proceedings of high schools. Instrument making, № 3, Volume 58, (2015) 229-235.
Google Scholar
[13]
M.R. Bahrami, Modeling of physical systems through bond graphs, St. Petersburg Polytechnical University, St. Petersburg, 2018, ISBN: 978-5-7422-6186-5.
Google Scholar
[14]
M.R. Bahrami, A.W.B. Abeygunawardana, Modeling, and simulation of tapping mode atomic force microscope through a bond-graph, Lecture Notes in Mechanical Engineering, PartF5, 2018, pp.9-15.
DOI: 10.1007/978-3-319-72929-9_2
Google Scholar
[15]
A.A. Asheichik, M.R. Bahrami, Investigation of antifriction feature of graflon under friction in seawater, International Conference on Industrial Engineering, Procedia Engineering, 206, (2017) 642–646.
DOI: 10.1016/j.proeng.2017.10.530
Google Scholar
[16]
A.A. Asheichik, M.R. Bahrami, Prediction of leak in the static mechanical seal, International Conference on Modern Trends in Manufacturing Technologies and Equipment 2017, MATEC Web of conferences, ICMTME 2017, 129, (2017).
DOI: 10.1051/matecconf/201712906002
Google Scholar
[17]
M.R. Bahrami, A Novel Design of an Electrical Transmission Line Inspection Machine, Lecture Notes in Mechanical Engineering: Advances in Mechanical Engineering, St. Petersburg, 2016, pp.67-73.
DOI: 10.1007/978-3-319-29579-4_7
Google Scholar
[18]
S.A. Abed, M.R. Bahrami, J.F. Al Draji, Analytical and Numerical Study of the Influence of a Single Cross Fracture on the Dynamic Behavior of a Rotary Bearing System, International Journal of Engineering and Technology, 7, (2018).
Google Scholar
[19]
M.A. Skotnikova, N.A. Krylov, V.V. Medvedeva, Influence of the Magnetic Component of Geomaterials on Properties of Friction Pairs, Procedia Engineering, 150 (2016) 612-617.
DOI: 10.1016/j.proeng.2016.07.053
Google Scholar
[20]
S.A. Abed, J.F. Al Draji, M.R. Bahrami, Harmonic analysis of the rotor-bearing with a single crack, Scientific and technical. statements SPbPU. Ser. Science and education. 3, (2018) 139-152.
Google Scholar
[21]
A.I. Lurie, Theory of elasticity, Science, Moscow,(1970).
Google Scholar
[22]
M.R. Bahrami, ANSYS Tutorial: An Introduction to Elasticity and Contact Problems in Mechanical APDL 15.0, St. Petersburg Polytechnical University, St. Petersburg, (2018).
Google Scholar
[23]
ANSI/AGMA 2101-D04 Fundamental Rating Factors and Calculation Methods for Involute Spur and Helical Gear Teeth. Alexandria VA: AGMA, American Gear Manufacturers Association, (2004).
Google Scholar
[24]
A.N. Lukyanova, Modeling of contact interaction of details, Samara State Technical University, Samara, (2012).
Google Scholar