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Ensuring Lateral Clearance in Gears by Displacing the Initial Tool Contour

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Abstract

Multicriterial optimization of gear engagement by means of Kompas-3D software permits calculation of the tool displacement required to ensure lateral clearance in gears. Recommendations regarding the displacement required for cylindrical gears (State Standard GOST 16532–70, appendix 2) are analyzed. Appropriate corrections are proposed.

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REFERENCES

  1. GOST (State Standard) 1643–81: Basic Requirements for Interchangeability. Cylindrical Gearings. Tolerances.

  2. Kutsokon’, V.A., Tochnost’ kinematicheskikh tsepei priborov (Accuracy of Kinematic Chains in Devices), Leningrad: Mashinostroenie, 1980.

  3. Buckingham, E., Manual of Gear Design, Section 2: Spur and Internal Gears, New York: Machinery, 1935.

  4. Bolotovskii, I.A., Spravochnik po geometricheskomu raschetu evol’ventnykh zubchatykh i chervyachnykh peredach (Handbook for Geometric Calculation of Involute and Worm Gears), Moscow: Mashinostroenie, 1986.

  5. Golovanev, V.A., Application of optimization methods and an interactive blocking contour in the selection of displacement coefficients (correction) of cylindrical involute gears of external fixing, SAPR Graf., 2014, no. 11, pp. 89–93.

  6. Bunday, B., Basic Optimisation Methods, London: Edward Arnold, 1984.

    MATH  Google Scholar 

  7. GOST (State Standard) 16532–70: Cylindrical Involute External Gear Pairs. Calculation of Geometry.

  8. Sil’vestrov, B.N., Spravochnik molodogo zuborezchika (Handbook of Beginning Gear-Milling Machine Operator), Moscow: Vysshaya Shkola, 1988, 2nd ed.

  9. GOST (State Standard) 659–89: Cylindrical Gear Hobbers with Vertical Work Axis. Basic Parameters and Dimensions. State Standards of Accuracy.

  10. Balakshin, B.S., Vzaimozamenyaemost’ i tekhnicheskie izmereniya v mahsinostroenii (Interchangeability and Technical Measurements in Mechanical Engineering), Moscow: Mashinostroenie, 1972.

  11. Chudakov, E.A., Mashinostroenie. Entsiklopedicheskii spravochnik. Razdel 3. Tekhnologiya proizvodstva mashin (Machine Engineering: Encyclopedic Handbook, Section 3: Production Technology of Machines), Moscow: Mashgiz, 1948, vol. 7.

  12. Vanin, V.A., Kolodin, A.N., and Fidarov, V.Kh., Tochnost’ kinematicheskikh tsepei metallorezhushchikh stankov: Uchebnoe posobie (Accuracy of Kinematic Chains of Metal-Cutting Machines: Manual), Tambov: Tambovsk. Gos. Tekh. Univ., 2011.

  13. Gavrilov, A.N., Priborostroenie i izmeritel’naya tekhnika (Instrumentation and Measurement Technique), Moscow: Mashgiz, 1960.

  14. Timofeev, B.P. and Novikov, D.V., Improving the quality of gears and transmissions by developing new standards, Pribory, 2013, no. 9, pp. 37–40.

  15. Popov, B.A., Errors in formulas of “GOST 16532–70: Cylindrical involute external gear pairs. Calculation of geometry,” Vestn. Mashinostr., 2009, no. 4, pp. 94–95.

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Correspondence to B. P. Timofeev.

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Translated by B. Gilbert

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Timofeev, B.P., Dang, N.T. & Chan, M.K. Ensuring Lateral Clearance in Gears by Displacing the Initial Tool Contour. Russ. Engin. Res. 41, 880–885 (2021). https://doi.org/10.3103/S1068798X21100269

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  • DOI: https://doi.org/10.3103/S1068798X21100269

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