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EQUIPMENT AND MATERIALS
Название Loading tests of retaining tricone bit bearing using physical model
DOI 10.17580/em.2021.02.13
Автор Valiev N. G., Simisinov D. I., Afanasiev A. I.
Информация об авторе

Ural State Mining University, Yekaterinburg, Russia:

Valiev N. G., Head of Department of Mining, Professor, Doctor of Engineering Sciences
Simisinov D. I., Head of Department of Mining Equipment Operation, Associate Professor, Candidate of Engineering Sciences, 7sinov@mail.ru
Afanasiev A. I., Professor at the Engineering Mechanics Department, Doctor of Engineering Sciences

Реферат

Tricone bits are currently less commonly used as compared with PDC bits. Tricone bits are mainly used in drilling in difficult geotechnical conditions and in blasthole drilling in open pit mines. The main disadvantage of tricone bits is the relatively short life. The main cause of the age limit is failure of the retaining ball bearing due to destruction of raceway and journal shoulder under high contact and bending stresses. Based on the provisions of the similarity theory, the physical model of the retaining drill bit bearing has been manufactured. The paper presents the data of the retaining bearing testing using a friction and wear testing machine, namely, the temporal variations in temperature, frictional torque and clearances of bearings. The temperature and the heat rating of the bearing are related. In the extreme conditions of operation at deficiency of lubrications, the contact stresses in the rings and balls of bearing, as well as their temperatures exceed greatly the allowable values. The authors propose using the procedure in engineering of a roller drill bit.

The study was carried out in the framework of the state contract between the Ministry of Science and Higher Education of the Russian Federation and the Ural State Mining University.

Ключевые слова Roller drill bit, bit bearing, physical model, wear testing, triboengineering, ball bearing
Библиографический список

1. Huang Z., Li G. Failure analysis of roller cone bit bearing based on mechanics and microstructure. Journal of Failure Analysis and Prevention. 2018. Vol. 18, No. 2. pp. 342–349.
2. Pialchenkov V. A. Methods of study of the load degree of equipment and cone drill bit bearings. Oil and gas studies. 2015. No. 1. pp. 88–95.
3. Pialchenkov V. A., Pialchenkov D. V., Dolgushin V. V., Kulyabin G. A. Studying load of the cutting structure of rolling cutter bit depending on the errors of its manufacture. Oil and gas studies. 2019. No. 1. pp. 113–120.
4. Bogomolov R. M. Analysis of techniques of parts production and rolling-cutter drill bits assembling and their influence on the tool operational capacity. Equipment and technologies for the oil and gas complex. 2020. No. 4. pp. 8–12.
5. Serdyuk N. I., Blinkov O. G. Simulation of a slide bearings failure in a drill-bit bearing structure. Equipment and technologies for oil and gas complex. 2017. No. 2. pp. 4–7.
6. Pelfrene G., Stab O., Tilleman D., Gallifet T. et al. Modelling the 3D Bit-Rock Interaction Helps Designing Better PDC Bits. In: SPE/IAD International Drilling Conference and Exhibition. 2019. DOI: 10.2118/194134-MS
7. Zhidovtsev N. A., Kershenbaum V. Ya., Ginzburg E. S., Bikbulatov I. K. et al. Longevity of rolling cutter. Moscow : Nedra, 1992. 272 p.
8. Zakirov N. N. Technikal and technological elements of life cycle of roller bits. Tyumen : TIU, 2018. 140 p.
9. Slipchuk A., Kuk A. Evaluation of the permissible moment in a roller cone drill bit providing the prescribed reliability of work. Ukrainian Journal of Mechanical Engineering and Materials Science. 2018. Vol. 4, No. 1. pp. 116–124.

10. Shevchenko A. N., Krasnoshtanov S., Ruuz M. V., Perfilev V. Analysis of the roller bit lubrication system. IOP Conference Series: Earth and Environmental Science. 2020. Vol. 408, No. 1. 012061.
11. Simisinov D., Afanasev A., Adas V., Simisinov A. Lubrication system of a roller cone bit. MATEC Web Conf. 2020. Vol. 329. DOI: 10.1051/matecconf/202032903006
12. Han C., Yu C., Li Y., Yan J. Mechanical performance analysis of hollow cylindrical roller bearing of cone bit by FEM. Petroleum. 2015. Vol. 1, No. 4. pp. 388–396.
13. Shigin A. O., Gilev A. V. Methods to calculate fatigue strength as a major factor of roller bit durability. Vestnik Irkutskogo gosudarstvennogo tekhnicheskogo universiteta. 2012. No. 3(62). pp. 22–27.
14. Schroder J., Pasquale M. D., Richards A. Bearing innovations extend roller-cone bit life. Oil and gas journal. 2016. Vol. 114, No. 6. pp. 50–55.
15. Simisinov D.I., Afanasiev A.I., Shestakov V.S., Valiev N.G. Loading of bearing retaining pin of tricone drill bit. Gornyi Zhurnal. 2020. No. 12. pp. 64–66. DOI: 10.17580/gzh.2020.12.14
16. Belyaev N. M., Strength of materials. Moscow : Nauka, 1965. 856 p.
17. Dobrovolsky V. A., Zablonskiy K. I., Mak S. L., Radchik A. S. et al. Parts of machines : Textbook. 7th enlarged and revised edition. Moscow : Mashinostroenie, 1972. 502 p.
18. Afanasev A. I., Kosenko E. A., Suslov D. N. Results and methods of thermal tests of linear motor of a screen-feeder. Izvestiya vuzov. Gornyi Zhurnal. 2011. No. 7. 2011. pp. 106–109.

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