Журнал Российского общества по неразрушающему контролю и технической диагностике
The journal of the Russian society for non-destructive testing and technical diagnostic
 
| Русский Русский | English English |
 
Главная Archive
18 | 11 | 2024
2015, 12 December

DOI: 10.14489/td.2015.12.pp.050-053

Yanovich V.S., Kowalski B.I., Bezborodov Yu.N., Agrovichenko D.V.
METHOD FOR CONTROL OF ANTI-WEAR PROPERTIES IN THE OXIDIZED TRANSMISSION OILS
(pp. 50-53)

Abstract. It is given the results of tribological tests of transmission oils of different basic framework. It is found that the time and rate of formation of the frictional contact area depend on the concentration of oxidation products, and its composition is changed cyclically. At the same time, the formation of frictional contact is determined by the total length of plastic and elastoplastic deformation, which is determined from chart records changes in the current flowing through frictional contact. Mineral oil has the best anti-wear properties according to the test results of testing the oxidized gear oils of different basic framework . The criterion of anti-wear properties is [proposed. It takes into account the concentration of the oxidation products on the nominal area of frictional contact, whose dependence on the concentration of the oxidation products is described by a linear equation that allows to compare various oils and improve the system of classification.

Keywords: wear scar diameter, the absorption coefficient of the light flux, criterion antiwear properties, the formation rate of the area of frictional contact.

V. S. Yanovich, B. I. Kowalski, Yu. N. Bezborodov, D. V. Agrovichenko
Siberian Federal University, Krasnoyarsk, Russia. E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра.  

1. Chichinadze A. V., Buianovskii I. A., Gurskii B. E. (2002). Transition diagram and the shielding effect of the lubricating layer. Trenie i iznos, 23(3), pp. 334-340.
2. Semenov A. P. (1965). Theory of rolling of metals. Theory of friction and wear. Moscow: Nauka, pp. 164-170.
3. Vinogradov V. G., Podpol'skii Iu. Ia., Karelova N. V. (1965). Conditions and types of jamming at friction of hardened carbon steel in lubricating environments. Mashinostroenie, (5), pp. 109-114.
4. Kostetskii B. I. (1970). Friction, lubrication and wear in machines. Kiev: Tekhnika.
5. Kashcheev V. N. (1969). Wear of steel under conditions of intensive operation. Fizikokhimicheskaia mekhanika materialov, (4), pp. 21-30.
6. Kragel'skii I. V., Alekseev N. M., Fisun L. E. (1980). Nature of the jamming under dry and boundary friction. Trenie i iznos, (2), pp. 197-208.
7. Koval'skii B. I., Bezborodov Iu. N., Petrov O. N., Tikhonov V. I. (2011). Device for testing friction materials and oils. Ru Patent No. 2428677. Russian Federation. Moscow.
8. Koval'skii B. I., Sorokin G. M., Efremov A. P. (1983). The method of determining the lubricating ability of oils. Certificate of authorship No. A.s. 1054732. USSR.

This article  is available in electronic format (PDF).

The cost of a single article is 350 rubles. (including VAT 18%). After you place an order within a few days, you will receive following documents to your specified e-mail: account on payment and receipt to pay in the bank.

After depositing your payment on our bank account we send you file of the article by e-mail.

To order articles please fill out the form below:

Purchase digital version of a single article


Type the characters you see in the picture below



 

 

 
Search
Rambler's Top100 Яндекс цитирования