STUDY OF TORQUE NONUNIFORMITY IN DOUBLE-ACTION HYDRAULIC ROTARY VANE MO-TORS
https://doi.org/10.21822/2073-6185-2020-47-1-39-47
Abstract
Abstract. Aim. Hydraulic rotary vane motors rely on the principle of torque maintained at a nominal pressure. In this case, the most important parameter of the torque is its nonuniformity. The problem of determining nonuniform torque in hydraulic motors having ten and twelve vanes is investigated with the aim of ensuring the maximum stability of this parameter.
Method. Braking torque occurs on the vanes of hydraulic rotary vane motors due to the pressure of the working fluid on the stator; the theoretical expression for torque does not take the braking effect of the vanes into account. Therefore, an expression is compiled for the braking torque of the vanes with a type of stator curve that provides constant acceleration of the vane relative to the rotor.
Results. Plots of changes in braking torques were constructed for 10- and 12-vane motors. Ratios of the minimum and maximum braking torques equal to 0.33 and 0.5 for motors with ten and twelve vanes, respectively, were obtained.
Conclusion. The torque nonuniformity coefficients for hydraulic motors for the given parameters of d =11,6% and d = 8,8% for motors having ten and twelve vanes, respectively, were obtained. The results of the analysis of the obtained parameters indicate a slight increase in the nonuniformity of torque in a ten-vane motor. In this case, a decrease in the number of vanes leads to an increase in the mechanical efficiency of the hydraulic machine.
About the Authors
V. Yu. SavinRussian Federation
Cand. Sci. (Technical), Ass. Prof
2 Bazhenova St., Kaluga 248000
V. Yu. Ilyichev
Russian Federation
Cand. Sci. (Technical), Ass. Prof
2 Bazhenova St., Kaluga 248000
References
1. Gavrilenko B.A. Gidravlicheskiy privod / B.A. Gavrilenko, V.A. Minin, S.N. Rozhdestvenskiy – M.: Mashi-nostroyeniye, 1968. – 502 s. [Gavrilenko B.A., Minin V.A., Rozhdestvensky S.N. Hydraulic drive. Moscow, Mashi-nostroenie, 1968, 502p. (In Russ.)]
2. Nekrasov B.B. Gidravlika i yeye primeneniye na letatel'nykh apparatakh / B.B. Nekrasov – M.: Mashinostroy-eniye, 1967. – 368 s. [Nekrasov B.B. Hydraulics and its use in aircraft. Moscow, Mashinostroenie, 1967, 368p. (In Russ.)]
3. Bashta T.M. Ob"yemnyye gidravlicheskiye privody / T.M. Bashta. [i dr.]. – M.: Mashinostroyeniye, 1979. – 628 s. [Bashta T.M., Zaichenko I. Z., Ermakov V.V., Haimovich E.M. Рositive-displacement hydraulic machinery. Mos-cow, Mashinostroenie, 1979, 628p. (In Russ.)]
4. . Isayev A.P. Gidravlika i gidromekhanizatsiya sel'skokhozyaystvennykh protsessov / A.P. Isayev, B.I. Ser-geyev, V.A. Didur. – M.: Agropromizdat, 1990. – 400 s. [Isaev A.P., Sergeev B.I., Didur V.A. Hydraulics and hydromech-anization of agricultural processes. Moscow, Agropromizdat, 1990, 400p. (In Russ.)]
5. Isupova I.V. Povysheniye dolgovechnosti rotatsionnykh vakuumnykh nasosov / I.V. Isupova, I.G. Tsubera // Innovatsii v sel'skom khozyaystve. – 2015. - №3. – S. 151-154. [Isupova I.V., Tsuber I.G. Rotary vacuum pumps life ex-tension. Agricultural Innovation. 2015; 3:151-154. (In Russ.)]
6. Borzov V.M. Identifikatsiya parametrov i raschet krutyashchego momenta plastinchatogo pnevmomo-tora / V.M. Borzov, I.V. Ivlev // Tekhnologiya mashinostroyeniya i materialovedeniye. – 2019. - №3. – S. 10-14. [Borzov V.M., Ivlev V.I. Mathematical modeling and vector identification of air vane. Engineering Technology and Materials Science. 2019; 3:10-14. (In Russ.)]
7. Zaychenko I.Z. Plastinchatyye nasosy i gidromotory / I.Z. Zaychenko, L.M. Myshlevskiy. - M.: Mashinostroy-eniye, 1970 . – 229 s. [Zaichenko I. Z., Myshlevsky L.M. Rotary vane pumps and hydraulic motors. Moscow, Mashi-nostroenie, 1970, 229p. (In Russ.)]
8. Savin V.YU. Issledovaniye ravnomernosti raskhodov vsasyvayushchikh i nagnetayushchikh plastin dlya plas-tinchatogo nasosa /V.YU. Savin // Elektronnyy zhurnal: nauka, tekhnika i obrazovaniye. – 2017. - №3 (14). – S. 18-22. [Savin V.Yu. Research of consumptions of suctions and injections vanes of the rotary vane pump. Science, technology and education. 2017; 3:18-22. (In Russ.)]
9. Savin V.YU. Opredeleniye dopustimykh otnosheniy radiusov statora plastinchatogo nasosa /V.YU. Savin, G.V. Volkov, V.S. Malakhov // Elektronnyy zhurnal: nauka, tekhnika i obrazovaniye. – 2017. - №3 (14). – S. 38-42. [Savin V.Yu., Volkov G.V., Malakhov V.S. Determination of allowable ratios of the stator radius of the rotary vane pump. Sci-ence, technology and education. 2017; 3: 38-42. (In Russ.)]
10. Savin R.V. Vybor chisla plastin v nasosakh dvoynogo deystviya / R.V. Savin, V.YU. Savin // Elek-tronnyy zhurnal: nauka, tekhnika i obrazovaniye. – 2018. - №4. – S. 6-13. [Savin R.V., Savin V.Yu. Selection of the number of plates in double-acting pumps. Science, technology and education. 2018; 4: рр. 6-13. (In Russ.)]
11. Goydo, M.Ye. Proyektirovaniye ob"yemnykh gidroprivodov / M.Ye. Goydo. — Moskva : Mashinostroye-niye, 2009. — 304 s. [Goydo M.E. Design of hydraulic drives. Moscow, Mashinostroenie, 2009, 304p. (In Russ.)]
12. Bashta, T.M. Gidroprivod i gidropnevmoavtomatika / T.M. Bashta – M.: Mashinostroyeniye, 1972. – 320 s. [Bashta T.M. Hydraulic drive and hydropneumatic automation. Moscow, Mashinostroenie, 1972, 320p. (In Russ.)]
13. Grinchar N.G. Osnovy gidroprivoda mashin. Chast' 1 / N.G. Grinchar, N.A. Zaytseva. – M.: FGBOU «Uchebno-metodicheskiy tsentr po obrazovaniyu na zheleznodorozhnom transporte», 2016. – 444 s. [Grinchar N.G., Zaitseva N.A. Basics of hydraulic machinery. Part 1. Moscow, Uchebno-metodicheskij centr po obrazovaniu na zheleznodorozhnom transporte, 2016, 444p. (In Russ.)]
14. Spravochnik po gidravlicheskim raschetam/ P.G. Kiselev. [i dr.]. – M.: Energiya, 1974. – 312 s. [Kiselev P.G., Altshul A.D., Danilchenko N.V., Kasparsen A.A., Krivchenko G.I., Pashkov N.N. Slissky S.M. Hydraulic Calculation Reference. Moscow, Energy, 1974, 312p. (In Russ.)]
15. Primery raschetov po gidravlike/ A.D. Al'tshul'. [i dr.]. – M.: Stroyizdat, 1976. – 256 s. [Altshul A.D., Kalitsun V.I., Mairanovsky F.G., Palgunov P.P. Examples of hydraulic calculations. Moscow, Stroyizdat, 1976, 256p. (In Russ.)]
16. Sbornik zadach po mashinostroitel'noy gidravlike / D.A. Butayev. [i dr.]. – M.: Izd-vo MGTU im. N.E. Bau-mana, 2002. – 628 s. [Butaev D.A., Kalmykova Z.A., Podviz L.G., Popov K.N., Rozhdestvensky S.N., Yanshin B.I. Col-lection of tasks in engineering hydraulics. Moscow. Publishing House Bauman Moscow State Technical University, 2002, 628p. (In Russ.)]
17. Nikitin N.N. Kurs teoreticheskoy mekhaniki/ N.N. Nikitin – M.: Vysshaya shkola, 1990. – 607 s. [Nikitin N.N. Theoretical Mechanics Course. Moscow, Graduate School, 1990, 607p. (In Russ.)]
18. Gidravlika, gidromashiny i gidroprivody: uchebnik dlya mashinostroitel'nykh vuzov / T.M. Bashta, S.S. Rud-nev, B.B. Nekrasov i dr. – M.: Mashinostroyeniye, 1982. – 423 s. [Bashta T.M., Rudnev S.S., Nekrasov B.B., Baybakov O.V. Hydraulics and hydraulic machines. Moscow, Mashinostroenie, 1982, 423p. (In Russ.)]
19. Sveshnikov, V.K. Stanochnyye gidroprivody: spravochnik / V.K. Sveshnikov. – M.: Mashinostroye-niye, 2008. – 640 s. [Sveshnikov V.K. Hydraulic machines: manual. Moscow, Mashinostroenie, 2008, 640p. (In Russ.)]
20. Savin V.YU. Korrektirovka profilya statora s tsel'yu snizheniya shuma v plastinchatykh nasosakh / V.YU. Savin // Aktual'nyye problemy gumanitarnykh i yestestvennykh nauk. – 2016.- № 11-4. – S. 29-31. [Savin V.Yu. Correc-tion of the stator profile to reduce noise in vane pumps. Actual problems of the humanities and natural sciences. 2016; 11-4:29-31. (In Russ.)]
Review
For citations:
Savin V.Yu., Ilyichev V.Yu. STUDY OF TORQUE NONUNIFORMITY IN DOUBLE-ACTION HYDRAULIC ROTARY VANE MO-TORS. Herald of Dagestan State Technical University. Technical Sciences. 2020;47(1):39-47. (In Russ.) https://doi.org/10.21822/2073-6185-2020-47-1-39-47