Журналы →  Chernye Metally →  2021 →  №2 →  Назад

Machine-building Technologies
Название Fine module hobs for processing cylindrical involute gears
DOI 10.17580/chm.2021.02.10
Автор D. B. Belov, O. I. Boriskin, S. I. Solovyеv
Информация об авторе

Tula State University (Tula, Russia)

D. B. Belov, Cand. Eng., Associate Prof., E-mail: imsbelov@mail.ru
O. I. Boriskin, Dr. Eng., Prof., E-mail: imtulgu@pochta.ru
S. I. Solovyev, Cand. Eng., Associate Prof., E-mail: sergei@bk.ru

Реферат

Aspects of formation of a hobs cutting part for processing of gear wheels are considered. In the traditional manufacture of hobs for processing the rear surfaces of cutting teeth, the process of radial or oblique relieving is used, which due to its dynamic nature associated with reciprocating motions of a grinding head with a grinding wheel installed thereon, makes it difficult to ensure high accuracy of teeth pitch and profile, as well as main hob parameters. These shortcomings are effectively eliminated by using the process of screw relieving to process the lateral rear surfaces of the hob teeth. Execution of a hob teeth profi le in the form of a gear rack enables to obtain a hob for processing gear wheels. A number of formulas are given, by means of which it is reasonably proved that hobs made using the considered principle of formation of teeth back surfaces can have a high class of accuracy — AA or AAA. Calculations showed that the displacement of the hob teeth at two revolutions of the main worm screw with a probability of 0.9973 does not exceed 0.13 μm, which is signifi cantly higher than the requirements of GOST 10331-81 for hobs with AAA accuracy class (not more than 4 μm for hobs with a pitch over 0.5 to 0.9 mm). The considered method of forming the hob rear surfaces in the form of counter right and left multi-turn screw surfaces (screw relieving) allows to obtain hobs not only for machining involute gears, but also other types of cutters, e.g. for machining threads, ratchet wheels and other parts having a regular profile.

Ключевые слова Hob, main worm screw, helical surface, accuracy, error, tooth profile, helical surface pitch, helical surface stroke, cutting teeth, toothed rack
Библиографический список

1. GOST 10331–81. Fine module hobs for cylindrical involute gears. Technical specifications. Introduced: 01.07.1982.
2. Golovko А. N., Yurasov S. Yu. Worm-type tool design for finishing teeth of involute gears. STIN. 2018. No. 11. pp. 17–19.
3. Golovko A. Determination of the profi le of the worm-type tool. Matec Web of Conferences International Conference on Modern Trends in Manufacturing Technologies and Equipment (ICMTMTE 2017). 2017. Vol. 129. 01043.
4. Golovko A. N., Kondrashov A. G., Yurasov S. Yu. Improved design of a worm type instrument for final machining of evolvent gear teeth. Procedia Engineering International Conference on Industrial Engineering (ICIE 2017). 2017. Vol. 206. pp. 1333–1336.
5. Golovko A. N. Application of worm-type tools for finishing of gear wheels teeth. Proceedings of the VIII International. Scientific and technical conference: Innovative machine-building technologies, equipment and materials – 2017. pp. 309–310.
6. Milsimerová A. The solution design of hobbing worm milling cutters face teeth undercut. Materials Science Forum. 2018. Vol. 919. pp. 59–67.
7. Milsimerová A. Sharpening hobbing worm milling cutters issue. Proceedings of the International Conference of DAAAM Baltic “Industrial Engineering” January 2015. 2015. pp. 57–62.
8. Zhou Y., Tang J., Zhou H., Yin F. Multistep Method for Grinding Face-Gear by Worm. Journal of Manufacturing Science and Engineering, Transactions of the ASME. 2016. Vol. 138, Iss. 7. 071013.
9. Feofilov N. D., Rakhmetov S. L., Yanov Е. S. Calculation of kinematic and statistical angles of prefabricated hobs. Izvestiya Tulskogo gosudarstvennogo universiteta. Tekhnicheskie nauki. 2016. No. 4, pp. 178–185.
10. Boriskin O. I., Stakhanov N. G., Khludov S. Ya., Yakushenkov А. V., Gorynina I. V. Some theoretical aspects of adaptation of part surfaces and a producing hob. Izvestiya Tulskogo gosudarstvennogo universiteta. Tekhnicheskie nauki. 2017. No. 8-1, pp. 93–96.
11. Boriskin O. I., Stakhanov N. G., Yakushenkov А. V., Khludov S. Ya., Gorynina I. V. Ways to increase the accuracy of involute hobs with replaceable indexable inserts. Izvestiya Tulskogo gosudarstvennogo universiteta. Tekhnicheskie nauki. 2016. No. 8-1. С. 277–280.
12. Fedorov Yu. N., Artamonov V. D., Zolotukhin О. L. Features of gear cutting of cylindrical gear wheels by cutting worm-type heads. Izvestiya Tulskogo gosudarstvennogo universiteta. Tekhnicheskie nauki. 2013. No. 8, pp. 95–101.
13. Golovko А. N., Grechishnikov V. А., Yurasov S. Yu., Romanov V. B. Estimation of error of wheel tooth profi le formation by a worm type tool with continuous screw cutting edges. Vestnik MGTU “Stankin”. 2016. No. 2. pp. 17–20.
14. Belov D. B., Boriskin О. I., Solovyev S. I. Features of cutters for machining of threaded surfaces with a low pinch. Chernye Metally. 2019. No. 5. pp. 58–63.
15. Ryabov Е. А., Yurasov S. Yu., Kondrashov А. G. Creation a gear cutting hob model using an equivalent rack. Vestnik IzhGTU imeni M. T. Kalashnikova. 2017. Vol. 20. No. 2, pp. 82–84.
16. Kondrashov А. G., Safarov D. Т., Faskhutdinov А. I., Davletshina G. К. Calculation of single-turn hobs for bevel gears with a circular tooth. STIN. 2017. No. 4, pp. 12–13.
17. Feofilov N. D., Skryabin V. N., Vorobyov I. А., Yanov Е. S. Effect of regrinding and geometry of prefabricated hob front surfaces on a gear wheels profile. Izvestiya Tulskogo gosudarstvennogo universiteta. Tekhnicheskie nauki. 2016. No. 7-2, pp. 86–92.

Language of full-text русский
Полный текст статьи Получить
Назад