Preview

Voprosy Materialovedeniya

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Influence of sliding bearing design on efficiency of the fluoroplast macromodifier for antifriction carbon plastics

https://doi.org/10.22349/1994-6716-2021-105-1-65-75

Abstract

The paper presents the results of laboratory and bench tests of UGET and FUT antifriction carbon plastics macro modified with PTFE. The efficiency (friction coefficient reduction) of this modification of carbon fiber reinforced plastics has been confirmed. The dependence of the method’s efficiency on the design of sliding friction units has been established. The plastic deformation of the fluoroplastic is the key factor that determines the effectiveness of the modifier when designing sliding bearings. The design of the friction unit should exclude the pressure gradient in the fluoroplastic protectors and prevent the possibility of an uncontrolled exit of the fluoroplastic from the friction zone.

About the Authors

I. V. Lishevich
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

Lishevich I. V., Cand Sc. (Eng)

49 Shpalernaya St, 191015 St Petersburg



A. V. Anisimov
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

Anisimov A. V., Dr Sc. (Eng)

49 Shpalernaya St, 191015 St Petersburg



G. I. Nikolaev
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

Nikolaev G. I., Dr Sc. (Chem)

49 Shpalernaya St, 191015 St Petersburg



A. S. Savelov
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

Savelov A. S., Cand Sc. (Eng)

49 Shpalernaya St, 191015 St Petersburg



A. S. Sargsyan
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

Sargsyan A. S., Cand Sc. (Eng)

49 Shpalernaya St, 191015 St Petersburg



References

1. Zavaleev, I. , Kupriyanova, M., Greenhouse gas emissions and their relationship to energy production, C.O.K., 2019, No 9, pp. 82–89. URL: https://www.c-o-k.ru/articles/vybrosy-parnikovyh-gazov-iih-vzaimosvyaz-s-vyrabotkoy-energii (reference date 08/04/2020).

2. Anisimov, A.V., Bakhareva, V.E., Lobyntseva, I.V., Petrova, L.V., Churikova, A. A., Binarnye opory iz modifitsirovannykh ugleplastikov dlya podshipnikov sudovykh valoprovodov [Binary supports made of modified carbon fiber reinforced plastics for bearings of ship shafting], Voprosy Materialovedeniya, 2006, No 2 (46), pp. 22–26.

3. Anisimov, A.V., Bakhareva, V.E., Rybin, V.V., Modifikatsiya antifriktsionnykh polimernykh kompozitsionnykh materialov na razlichnykh masshtabnykh urovnyakh [Modification of antifriction polymer composite materials at various scale levels], Voprosy Materialovedeniya, 2009, No 1 (57), pp. 9–16.

4. Bartenev, G. M., Lavrentiev, V.V., Trenie i iznos polimerov [Friction and wear of polymers], Leningrad: Khimiya, 1972.

5. Tochilnikov, D. G., Ginzburg, B. M., Metodika ekspressnykh tribotekhnicheskikh ispytaniy antifriktsionnykh polimerov [Method of express tribotechnical tests of antifriction polymers], Voprosy Materialovedeniya, 2002, No 3 (31), pp. 39–48.

6. Dobychin, M. N., Kurbatkin, I.N., Morozov, A.V., Nikulin, A.V., Sachek, B. Y a. , Savelov, A. S., Anisimov, A. V., Issledovanie ugleplastikov, makromodifitsirovannykh ftoroplastom [Study of carbon fiber-reinforced plastics, macromodified with fluoroplastic], Voprosy Materialovedeniya, 2009, No 1 (57), 2009, pp. 26–32.

7. Anisimov, A. V., Bakhareva, V. E., Chernigovsky, A. A., Stendovye tribotekhnicheskie ispytaniya antifriktsionnykh modifitsirovannykh ugleplastikov dlya uzlov treniya gidroturbin [Bench tribotechnical tests of antifriction modified carbon plastics for friction units of hydraulic turbines], Voprosy Materialovedeniya, 2002, No 3 (31), pp. 78–83.

8. Bakhareva, V. E., Anisimov, A.V., Savelov, A.S., Pekler, K.V., Ilyin, S. Ya., Morkin, O. V. Sozdanie makromodifitsirovannykh ftoroplastom ugleplastikov dlya podshipnikov skolzheniya rabochikh koles povorotno-lopastnykh gidroturbin [Bench tribotechnical tests of antifriction modified carbon plastics for friction units of hydraulic turbines], Voprosy Materialovedeniya, 2009, No 1 (57), pp. 17–25.

9. Rubin, M.B., Bakhareva, V. E., Podshipniki v sudovoy tekhnike [Bearings in marine engineering]: Handbook, Moscow: Sudostroenie, 1987.

10. Kataev, V.M., Popov, V.A., Sazhin, B.I., Spravochnik po plasticheskim massam [Plastics masses handbook], Moscow: Khimiya, 1975, V. 1.

11. Ganz, S. N., Parkhomenko, V. D., Antifriktsionnye khimicheski stoykie materialy v mashinostroenii [Antifriction chemically resistant materials in mechanical engineering], Moscow: Mashinostroenie, 1965.


Review

For citations:


Lishevich I.V., Anisimov A.V., Nikolaev G.I., Savelov A.S., Sargsyan A.S. Influence of sliding bearing design on efficiency of the fluoroplast macromodifier for antifriction carbon plastics. Voprosy Materialovedeniya. 2021;(1(105)):65-75. (In Russ.) https://doi.org/10.22349/1994-6716-2021-105-1-65-75

Views: 352


ISSN 1994-6716 (Print)