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Title of the article

DESIGN AND WORKFLOW FEATURES OF UNIT OF INTERACTIVE CLUTCHES OF HYDROMECHANICAL TRANSMISSION

Authors

BELABENKO Dmitriy S., Head of the Hydromechanical Transmission Division, JSC “Minsk Wheel Tractor Plant”, 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 MECHANICS OF MOBILE MACHINES
Year 2019 Issue 1 Pages 19–29
Type of article RAR Index UDK 629.014.8-235 Index BBK  
Abstract

A review of clutches related to the type of tandem friction clutches is presented. The known solutions, disadvantages and advantages of the double friction clutch, which includes two control elements having a hydraulic connection between the hydraulic cylinders, are analyzed. The studies that have examined the clutches are analyzed. A typical block diagram of the mechatronic control system and the vehicle is drawn up, with the help of which studies of the shift process are carried out in the general case. In the analyzed studies, the simulation was carried out taking into account not all elements of the block diagram. There are three diagrams on the basis of the use of circuit elements in modeling. The  rational configuration of the elements for the study was chosen. The results of study are presented in the article. The  dynamic scheme of double friction clutch hydraulic drive and its mathematical model with introduced hydraulic connection between hydraulic cylinders are developed. The mathematical model uses the values of the stiffness of the elastic elements: the springs, friction discs, thrust disc. The stiffness of the thrust disc, which is part of a complex assembly unit, is determined by the calculation of the finite element method. The mathematical model of the hydraulic drive contains differential equations that retain their appearance for all positions of the piston.

Keywords

clutch, double friction clutch, hydromechanical transmission, dynamic diagram, mathematical model

 
Bibliography
  1. Gapoyan D.T. Friktsiony avtomaticheskikh korobok peredach. Konstruktsiya i raschet [Automatic gearbox clutches. Construction and calculation]. Moscow, Mashinostroenie Publ., 1966. 167 p.
  2. Tarasik V.P. Friktsionnye mufty avtomobilnykh gidromekhanicheskikh peredach [Vehicle hydromechanical gearbox friction clutches]. Minsk, Nauka i tekhnika Publ., 1973. 320 p.
  3. Odintsov V.V., Ponomarenko M.A., Samushchenko L.A. Gidromekhanicheskie peredachi serii U35615. Rukovodstvo po ekspluatatsii [Hydromechanical gearboxes series У35615. Manual]. Minsk, Amkodor Publ., 2010. 68 p.
  4. Nikolaev Yu.I., Staskevich S.G., Grinyuk V.S., Poddubko S.N. Osobennosti konstruktsii i rascheta dvoynoy friktsionnoy mufty planetarnoy korobki peredach [The design and calculation features of tandem friction clutch of planetary gearbox]. Mekhanika mashin, mekhanizmov i materialov [Mechanics of machines, mechanisms and materials], 2009, no. 1(6), pp. 41–43.
  5. Nikolaev Yu.I., Poddubko S.N., Matskevich A.A., Staskevich  S.G., Pavlov Yu.E. Unifitsirovannaya gidravlicheskaya sistema avtomaticheskogo upravleniya i zhizneobespecheniya semeystva perspektivnykh gidromekhanicheskikh peredach MZKT [Unified hydraulic system of automatic control and life support for the family prospective hydromechanical transmission of MWTP]. Mekhanika mashin, mekhanizmov i materialov [Mechanics of machines, mechanisms and materials], 2011, no. 2(15), pp. 33–38.
  6. Allison 1000/2000 Series. Technical Service Information. Miami, Automatic transmission service group, 2000. 120 p.
  7. Kawai Norikazu. Clutch lubrication structure for automatic transmission. Patent EU, no. JP2011012736, 2011. Available at: https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=20110120&CC=JP&NR=2011012736A&KC=A# (accessed 27 February 2017).
  8. Gavrilenko B.A., Minin V.A., Rozhdestvenskiy S.N. Gidravlicheskiy privod [Hydraulic drive]. Moscow, Mashinostroenie Publ., 1968. 502 p.
  9. Bashta T.M. Gidroprivod i gidropnevmoavtomatika [Hydraulic drive and hydropneumoautomatics]. Moscow, Mashinostroenie Publ., 1972. 320 p.
  10. Vasilchenko V.A. Gidravlicheskoe oborudovanie mobilnykh mashin [The hydraulic equipment of mobile machines]. Moscow, Mashinostroenie Publ., 1983. 301 p.
  11. Belabenko D.S. Opredelenie silovoy nagruzhennosti transmissii pri troganii spetsialnogo kolesnogo shassi s gidromekhanicheskoy peredachey [Determination of power load of the transmission when starting of the special wheeled chassis with hydromechanical transmission]. Aktualnye voprosy mashinovedeniya [Topical issues of mechanical engineering], 2018, issue 7, pp. 15–21.
  12. Rumyantsev L.A. Ustroystvo upravleniya gidromekhanicheskoy peredachey [The device of hydromechanical gearbox control]. Avtomobilnaya promyshlennost [Automotive industry], 2018, no. 7, pp. 19–24.
  13. Allison Transmission. Modeli spetsialnogo naznacheniya: ruk-vo po poisku i ustraneniyu neispravnostey oborudovaniya seriy 3000 i 4000 [Allison Transmission. Special purpose models: troubleshooting manual of 3000 and 4000 series equipment fault]. Detroit, General Motors Corp., 2005. 890 p.
  14. Basalaev V.N., Kovalenko A.V. Issledovanie protsessa pereklyucheniya peredach pod nagruzkoy i optimizatsiya upravleniya friktsionnymi muftami [Investigation of the gearshift process under load and optimization controlling the friction clutches of mechanical transmission]. Mekhanika mashin, mekhanizmov i materialov [Mechanics of machines, mechanisms and materials], 2011, no. 2(15), pp. 24–32.
  15. Gao B., Chen H., Sanada K. Clutch-to-clutch shift control of an automatic transmission with proportional pressure control valves. Proc. 7th JFPS International Symposium on Fluid Power. Toyama, 2008, pp. 659–664.
    16. Tarasik V.P. Modelirovanie mekhatronnoy sistemy upravleniya friktsionami pereklyucheniya peredach avtomaticheskoy transmissii avtomobilya [Simulation of mechatronic control system of automatic transmission gearshift clutches of the car]. Gruzovik [Truck], 2017, no. 10, pp. 7–15.
  16. Yunjiang C., Peng D., Shuai Y., Xiangyang X. Virtual Clutch controller for clutch-to-clutch shifts in planetary-type automatic transmission. Mathematical Problems in Engineering, 2015, vol. 2015. Available at: http://dx.doi.org/10.1155/2015/213162 (accessed 10 September 2018).
  17. Lomovtsev A.D. Razrabotka algoritmov upravleniya avtomaticheskoy korobkoy peredach transportnykh sredstv po zakonu “upravlyayushchiy tok – krutyashchiy moment” [Development of control algorithms for automatic transmission of vehicles according to the law “control current – torque”]. Trudy NAMI [NAMI proceedings], 2017, no. 2(269), pp. 94–100.
  18. Krasnevskiy L.G., Poddubko S.N. Pretsizionnoe upravlenie avtomaticheskimi transmissiyami: itogi 50 let razvitiya [Precision control of automatic transmissions: the summary of 50  years development]. Mekhanika mashin, mekhanizmov i  materialov [Mechanics of machines, mechanisms and materials], 2015, no. 4(33), pp. 5–13.
  19. Krasnevskiy L.G., Belevich A.V. Avtomaticheskie transmissii: tekhnologiya “Clutch-to-clutch shifts” — istoriya i sovremennoe sostoyanie [Automatic transmissions: technology “Clutch-to-clutch shifts” — history and current status]. Mekhanika mashin, mekhanizmov i materialov [Mechanics of machines, mechanisms and materials], 2018, no. 1(42), pp. 5–13.
  20. Krasnevskiy L.G. Sovremennaya teoriya i tekhnika upravleniya gidromekhanicheskimi peredachami mobilnykh mashin [Modern theory and management technology of hydromechanical transmissions of mobile machines]. Aktualnye voprosy mashinovedeniya [Topical issues of mechanical engineering], 2013, issue 2, pp. 53–62.
  21. Tarasik V.P., Romanovich Yu.S. Pereklyuchenie peredach karernogo samosvala s GMP [Gearshift of dump truck with hydromechanical transmission]. Avtomobilnaya promyshlennost [Automotive industry], 2018, no. 8, pp. 12–20.
  22. Byerly J.A., Kresse J.P., Rains M.A., Runde J.K. Double transition shift control in an automatic powershifting transmission. Patent USA, no. 2015/0032347А1, 2015.
  23. Tarasik V.P., Gorbatenko N.N., Plyakin R.V., Kurstak V.I., Egorov A.N., Reginya V.V., Tereshonok S.M., Eydlin E.L. Sposob upravleniya gidromekhanicheskoy peredachey mobilnoy mashiny [Method of vehicle hydromechanical transmission control]. Patent RB, no. 13551C1, 2010.
  24. Shultz J., Swingler P. Control for managing actuator output pressure applied to a torque transmitting mechanism of a  multi-speed transmission. Patent USA, no. 2015/0211629А1, 2015.
  25. Mikhaylov V.V. Matematicheskaya identifikatsiya elektromagnitnogo klapana s proportsionalnym upravleniem [Mathematical identification of proportional control solenoid valve]. Aktualnye voprosy mashinovedeniya [Topical issues of mechanical engineering], 2013, issue 2, pp. 136–139.
  26. Tarasik V.P., Gorbatenko N.N., Plyakin R.V., Egorov A.N., Reginya V.V. Mekhatronnaya sistema avtomaticheskogo upravleniya gidromekhanicheskoy peredachey karernykh samosvalov BelAZ [Hydromechanical transmission automatic control mechatronic system of dump truck BelAZ]. Gruzovik [Truck], 2011, no. 2, pp. 2–11.
  27. Tarasik V.P., Savitskiy V.S. Metodika proektirovaniya mekhanizma upravleniya friktsionami gidromekhanicheskoy peredachi na osnove matematicheskogo modelirovaniya protsessa ego funktsionirovaniya [Method of designing the mechanism of hydromechanical transmission clutches control on the basis of mathematical modeling of its functioning process]. Gruzovik [Truck], 2016, no. 6, pp. 3–12.
  28. Belchik L.D., Strok E.Ya., Snitkov A.G., Savchuk S.V. Imitatsiya rabochikh protsessov elektrogidravlicheskikh regulya-torov davleniya [Simulation of working processes of  the  electrohydraulic pressure regulators]. Aktualnye voprosy mashinovedeniya [Topical issues of mechanical engineering], 2015, issue 4, pp. 135–137.
  29. Egorov A.N., Reginya V.P., Tarasik V.P. Evolyutsiya konstruktorskikh razrabotok gidromekhanicheskikh peredach dlya karernykh samosvalov BelAZ [The evolution of the development of hydromechanical transmission of dump trucks BelAZ]. Vestnik Belorussko-Rossiyskogo universiteta [Herald of Belarusian-Russian University], 2011, no. 4, pp. 17–26.