Smart Search 



Title of the article PARAMETER SELECTION OF FOUR-CYLINDER DIESEL TORSIONAL VIBRATION DAMPERS
Authors

KLESSO Mikhail A., Chief Design Engineer of the Chief Design Engineer’s Office, OJSC “MINSK MOTOR PLANT” Holding Managing Company”, Minsk, Republic of Belarus, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

NIKISHEV Alexander A., Head of the Design Engineering Department of the Chief Design Engineer’s Office, OJSC “MINSK MOTOR PLANT” Holding Managing Company”, Minsk, Republic of Belarus, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

PREDKO Andrey V., Senior Researcher of the Chief Design Engineer’s Office, OJSC “MINSK MOTOR PLANT” Holding Managing Company”, Minsk, Republic of Belarus, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

PETRUCHENKO Alexander N., Ph. D. in Eng., Assoc. Prof., Senior Researcher of the Chief Design Engineer’s Office, OJSC “MINSK MOTOR PLANT” Holding Managing Company”, Minsk, Republic of Belarus, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

In the section DYNAMICS, DURABILITY OF VEHICLES AND STRUCTURES
Year 2021
Issue 4(57)
Pages 27–32
Type of article RAR
Index UDK 621.43-232.174.001.5:539.319
DOI https://doi.org/10.46864/1995-0470-2021-4-57-27-32
Abstract Torsional vibration dampers in modern internal combustion engines are used to reduce alternating shear stresses leading to fatigue failure of the crankshaft, as well as to diagnose the crankshaft, reduce oil consumption, increase the mechanical efficiency of the engine, and reduce noise. Torsional vibration dampers are suggested to be used at OJSC “MINSK MOTOR PLANT” Holding Managing Company” to improve the technical level of four-cylinder diesel engines. Damper parameters choice is based on torsional system model research, which is equivalent to the torsional diesel system of a 4ЧН (4ChN) 11×12.5 diesel engine. The amplitudes of the crankshaft nose torsional vibrations with the engine running are calculated according to the full-load curve. It was found that the maximum amplitude of vibrations corresponds to the diesel engine operation at a rated speed of 1000 rpm. In this case the amplitude of twisting of the crankshaft nose is 0.123 deg. For this diesel engine operating mode, the moment of inertia of the liquid damper flywheel and the damping coefficient were determined. They ensure a decrease in the torsional vibrations amplitude by more than three times. The calculation determined the expected decrease in the torsional vibrations amplitude for other modes of engine operation according to the full-load curve. In the entire research of crankshaft rated speed, the amplitude of nose torsional vibrations when using a damper is three times lower than without it. For experimental refinement of the damper parameters, a damper design with a variable moment of the flywheel inertia, as well as the possibility of replacing the polymethylsiloxane fluid are proposed.
Keywords torsional vibrations, crankshaft, vibration amplitude, equivalent torsional system, damper, torsional stiffness, differential equation system
  You can access full text version of the article.
Bibliography
  1. Vikulov S.V. Diagnostika kolenchatogo vala sudovogo dizelya po parametram krutilnykh kolebaniy [Diagnostics of the crankshaft of a marine diesel engine according to the parameters of torsional vibrations]. Polzunovskiy vestnik, 2013, no. 4–3, pp. 146–150 (in Russ.).
  2. Nikishin V.N., Serpov A.S., Malyshenok V.V. Vibronagruzhennost i raschet soudareniya v shesterenchatom privode maslyanogo nasosa pri uglovykh kolebaniyakh kolenchatogo vala avtomobilnogo dizelya [Vibration loading and collision calculation in the gear drive of an oil pump with angular vibrations of the crankshaft of an automobile diesel engine]. Dvigatelestroyeniye, 1987, no. 3, pp. 18–22 (in Russ.).
  3. Nikishin V.N. Uglovye kolebaniya kolenchatogo vala i kharakteristiki dizelya [Angular oscillations of the crankshaft and diesel engine characteristics]. Avtomobilnaya promyshlennost, 2007, no. 2, pp. 11–14 (in Russ.).
  4. Filipović I., Bibić D., Milašinović A., Blažević A., Pecar A. Preliminary selection of basic parameters of different torsional vibration dampers intended for use in medium-speed diesel engines. Transactions of FAMENA, 2012, vol. 36, no. 3, pp. 79–88.
  5. Matyja T., Łazarz B. Selection of torsional vibration damper based on the results of simulation. Journal of vibroengineering, 2015, vol. 17, iss. 8, pp. 4069–4077.
  6. Efremov L.V. Teoriya i praktika issledovaniy krutilnykh kolebaniy silovykh ustanovok s primeneniem kompyuternykh tekhnologiy [Theory and practice of research of torsional vibrations of power plants using computer technology]. Saint Petersburg, Nauka Publ., 2007. 276 p. (in Russ.).
  7. Yamanin A.I., Zharov A.V. Dinamika porshnevykh dvigateley [Dynamics of piston engines]. Moscow, Mashinostroenie Publ., 2003. 464 p. (in Russ.).
  8. Gots A.N. Krutilnye kolebaniya kolenchatykh valov avtomobilnykh i traktornykh dvigateley [Torsional vibrations of crankshafts of automobile and tractor engines]. Vladimir, Vladimirskiy gosudarstvennyy universitet Publ., 2008. 200 p. (in Russ.).
  9. Goldman S. Frequency analysis, modulation and noise. New York, McGraw Hill, 1948. 434 p.
  10. Brusa E., Delprete C., Genta G. Torsional vibration of crankshafts: effects of non-constant moments of inertia. Journal of sound and vibration, 1997, vol. 205, iss. 2, pp. 135–150. DOI: https://doi.org/10.1006/jsvi.1997.0964.
  11. Gots A.N. Metodika vybora optimalnykh koeffitsientov dempfirovaniya dlya dempferov krutilnykh kolebaniy kolenchatykh valov avtotraktornykh dvigateley [Method of selection of optimal damping coefficients for torsional vibration dampers of crankshafts of automobile and tractor engines]. Traktory i selkhozmashiny, 2019, no. 6, pp. 21–27 (in Russ.).