Method and stand for conducting control tests of wave reducers
| Authors: Bolshakov G.S., Tarasov D.A., Bannov I.E. | Published: 01.01.2026 |
| Published in issue: #1(790)/2026 | |
| Category: Mechanical Engineering and Machine Science | Chapter: Manufacturing Engineering | |
| Keywords: wave reducer, intermediate rolling elements, control and test bench, geometric accuracy, torsional compliance, freewheel |
Measuring parts in the manufacture of wave reducers with intermediate rolling elements, as well as other mechanical gears, does not allow you to control all the parameters of manufacturing accuracy. Special measuring and control stands for checking the parameters of wave gears with intermediate rolling elements, similar to those used for the study of standardized mechanical gears, are not produced by the industry, therefore, one of the options for quality control of the manufacture of wave gearboxes is to check their operability on a closed-flow control and test bench of the proposed design. In this case, the compliance of the calculated mechanical characteristics with the normative values, including the actual value of the efficiency coefficient, is determined. A method is proposed for controlling geometric accuracy, torsional compliance, freewheeling — the "backlash" of the gearbox and the efficiency. The given method and design of the stand make it possible to carry out control tests of wave reducers, as well as the running-in of gearboxes without load and in a loaded state.
EDN: MASEJD, https://elibrary/masejd
References
[1] An I.K., Pankratov E.N., Lazurkevich A.V. Kinematic analysis of an intermediate roller in a planetary gear. Vestnik mashinostroeniya, 2022, no. 3, pp. 41–47. EDN: UUHDSD (in Russ.). (Eng. version: Russ. Engin. Res., 2022, vol. 42, no. 6, pp. 573–578, doi: https://doi.org/10.3103/S1068798X2206003X)
[2] Anisimov R.V., Revenkov A.A. Monitoring of the exactitude of parameters of toothed wheels with interior teeth not involute the profile. Fundamentalnye i prikladnye problemy tekhniki i tekhnologii [Fundamental and Applied Problems of Engineering and Technology], 2012, no. 3–2, pp. 145–150. EDN: PUKGQR (in Russ.).
[3] Ivanov A.S., Murkin S.V., Ermolaev M.M. et al. Multi-purpose integration bed for tests of high-precision reducing gears. Vestnik mashinostroeniya, 2013, no. 5, pp. 19–21. EDN: REKNHD (in Russ.).
[4] Dubovik E.A. The adaptability design of the actuator test stand transfer boxes change gear trucks. Sborka v mashinostroenii, priborostroenii [Assembling in Mechanical Engineering and Instrument-Making], 2019, no. 5, pp. 195–199. EDN: WVJYZT (in Russ.).
[5] Bogatyrev N.I., Kurasov V.S., Pleshakov V.N., Kravchenko V.A. Energy-saving test bench for reducers testing. Selskiy mekhanizator, 2018, no. 7–8, pp. 52–53. EDN: YNHUSL (in Russ.).
[6] Meskhi B.Ch., Rybak A.T., Pelipenko A.Yu. et al. Simulation of the testing process of reciprocating hydraulic cylinders with energy recovery. Izvestiya TulGU. Tekhnicheskie nauki [News of the Tula State University. Technical Sciences], 2023, no. 8, pp. 441–449. EDN: FCGUHW (in Russ.).
[7] Dubovik E.A. Stand for test hydraulic machines with recuperation of the energy. Avtomobilnaya promyshlennost, 2015, no. 9, pp. 33–35. EDN: UMVUQP (in Russ.).
[8] Larin P.A., Karakulov M.N. Ways of improving of the test benches for testing of mechanical reducers. Vestnik mashinostroeniya, 2011, no. 5, pp. 91–92. EDN: QGRYIN (in Russ.).
[9] Zenin A.R., Rybak A.T., Beskopylnyy A.N. et al. Testing bench for reciprocating hydraulic cylinders with energy recovery: structure, simulation, and calculation. Advanced Engineering Research (Rostov-on-Don), 2024, vol. 24, no. 4, pp. 347–359, doi: https://doi.org/10.23947/2687-1653-2024-24-4-347-359 (in Russ.).
[10] Terekhov G.A. Errors of experimental determination of efficiency of gear mechanisms on stands with closed power flow. Zapiski Gornogo instituta [Journal of Mining Institute], 1986, vol. 108, pp. 32. (In Russ.).
[11] Shekhovtsov V.V., Khodes I.V., Shevchuk V.P. et al. Stand with hydraulic locking of power circuit for test of powertrains of wheeled and caterpillar machines. Sovremennye naukoemkie tekhnologii [Modern High Technologies], 2013, no. 2, pp. 55–59. EDN: PWATGR (in Russ.).
[12] Ivanov V.P., Tikhonov P.V. Bench for running-in of mining equipment gearboxes. Tyazheloe mashinostroenie [Russian Journal of Heavy Machinery], 2005, no. 2, pp. 32–33. EDN: IACXXD (in Russ.).
[13] Ostreykovskiy V.A. Teoriya nadezhnosti [Reliability theory]. Moscow, Vysshaya shkola Publ., 2003. 463 p. (in Russ.).
[14] Selyuta P.P. Operational life testing of open gear made of titanium alloys. Morskoy vestnik, 2016, no. 4, pp. 53–54. EDN: XCREPD (in Russ.).
[15] Semin I.N. Installation for belt transmission testing. Izvestiya MGTU MAMI, 2008, no. 1, pp. 123–127. EDN: LDMNLJ (in Russ.).
[16] Grankin B.K., Kozlov V.V., Sulaberidze D.V. Testing of operating conditions of gearing of difficult mechanical object. Kontrol. Diagnostika, 2010, no. 4, pp. 31–35. EDN: LSOWSB (in Russ.).