Experimental study of the possibility of using silicate paste to increase the durability of automobile engine parts

Authors

  • Volodymyr Makarov Vinnytsia National Technical University
  • Tamara Makarova Vinnytsia National Technical University
  • Мykola Vynogradov Donbas National Academy of Civil Engineering and Architecture
  • Mykola Mastepan Donbas National Academy of Civil Engineering and Architecture
  • Dmytro Savenok Donbas National Academy of Civil Engineering and Architecture
  • Oleksandr Levadnyi Donbas National Academy of Civil Engineering and Architecture

DOI:

https://doi.org/10.31649/2413-4503-2023-17-1-92-98

Keywords:

silicate paste, research result, surface wear resistance, laboratory setup, optimal surface, coefficient of friction

Abstract

The study of the possibility of using silicate abrasive paste to increase the durability of car parts is considered on the example of the "valve-seat" connection of the gas distribution mechanism of the internal combustion engine. The service life of the gas distribution mechanism is mainly determined by the wear of its links, therefore, to increase its durability, it is necessary to ensure high wear resistance of its parts (valve and seat). As a result of wear and tear of parts, technical and economic indicators of the engine deteriorate. A drop in engine power occurs because of a loose fitting of the valve in the seat and gas breakthrough. Therefore, the operating conditions of the connected friction pairs of the gas distribution mechanism depend on the quality of the friction surfaces, on the changes that occur on the surfaces in contact, in the friction process in the presence or absence of lubricant, and on the nature of wear. When restoring the "valve-seat" connection, the final treatment for eliminating defects is rubbing with abrasive pastes.

The paper presents the results of an experimental study of the possibility of using silicate paste to increase the durability of parts during their restoration. To determine the durability of parts whose surfaces were treated with abrasive pastes, a study of the wear resistance of such surfaces was conducted. For this purpose, the anti-friction properties and load capacity of surfaces treated with silicate paste and existing compositions (abrasive with oil and "CT") were determined. For the processing of friction surfaces, a laboratory installation was used, which is mounted on the bed of a universal machine designed for lapping the valves of auto tractor engines. Research on determining the antifriction properties and load capacity of surfaces treated with abrasive pastes was carried out on a special face friction unit.

The conducted research confirms that in the process of treatment with a silicate abrasive composition, a surface close to optimal is formed, which causes a low coefficient of friction, temperature, and intensity of wear and this occurs due to the formation of amorphous silica (SiO2). It has been proven that the best anti-friction properties have a friction pair that is treated with an abrasive silicate composition, and this will increase the durability of car engine parts by 15-20%. It was established that the friction pair, which is treated with an abrasive silicate composition, withstands the load before seizing 1.8-2 times more than the friction pairs, which are treated with existing compositions.

Author Biographies

Volodymyr Makarov, Vinnytsia National Technical University

Dr. Sc. (Eng.), Professor, Professor of the Department of Automobiles and Transport Management

Tamara Makarova, Vinnytsia National Technical University

Ph. D. (Econ.), Associate Professor, Associate Professor of the Department of Automobiles and Transport Management

Мykola Vynogradov, Donbas National Academy of Civil Engineering and Architecture

Ph. D. (Eng.), Associate Professor, Associate Professor of the Department of Road Transport

Mykola Mastepan, Donbas National Academy of Civil Engineering and Architecture

Ph. D. (Eng.), Associate Professor, Acting head of the Department of Road Transport

Dmytro Savenok, Donbas National Academy of Civil Engineering and Architecture

Ph. D. (Eng.), Acting head Dean of the Mechanical Faculty

Oleksandr Levadnyi , Donbas National Academy of Civil Engineering and Architecture

Mahistrant of the Faculty of Mechanical Engineering

References

ДСТУ 2860-94. Надійність техніки. Терміни та визначення. Чинний від 1996-01-01. URL: http://online.budstandart.com/ua/catalog/doc-page.html?id_doc=25034

Макаров В. А,. Мастепан М. А, Виноградов М. С., Бєляєв Д. С. Експериментальне дослідження впливу зернистості абразиву силікатної пасти на якість поверхонь тертя. Вісник машинобудування та транспорту. 2022. № 1(15). С. 100–105.

ДСТУ 2823-94. Зносостійкість виробів тертя, зношування та мащення. Терміни та визначення. URL: https://dnaop.com/html/62330/doc-ДСТУ_2823-94

Баглюк Г. А. Зносостійкі матеріали. Енциклопедія сучасної України / ред. кол.: І. М. Дзюба [та ін.]; НАН України, НТШ. Київ: Інститут енциклопедичних досліджень НАН України, 2001¬2022. ISBN 966-02-2074-X.

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Published

2023-09-14

How to Cite

[1]
V. Makarov, T. Makarova, Vynogradov М., M. . Mastepan, D. . Savenok, and O. Levadnyi, “Experimental study of the possibility of using silicate paste to increase the durability of automobile engine parts”, ВМТ, vol. 17, no. 1, pp. 92–98, Sep. 2023.

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