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Title | New technology for restoring Babbitt coatings |
Authors |
Konoplianchenko, I.
Tarelnyk, Viacheslav Borysovych Martsynkovskyy, V. Haponova, Oksana Petrivna ![]() Lazarenko, А. Sarzhanov, A. Mikulina, M. Zhengchuan, Z. Pirogov, V. |
ORCID |
http://orcid.org/0000-0002-4866-0599 |
Keywords |
new technology coating restoration restoration of worn surfaces |
Type | Article |
Date of Issue | 2021 |
URI | https://essuir.sumdu.edu.ua/handle/123456789/99158 |
Publisher | IOP Publishing Ltd |
License | Creative Commons Attribution 4.0 International License |
Citation | Ie Konoplianchenko et al 2021 J. Phys.: Conf. Ser. 1741 012040. |
Abstract |
The reasons for reducing the durability of sliding bearings and the factors formed
both at the stage of their manufacture and during operation are considered. Taking into account
the types of destruction of sliding bearing coatings (exfoliation, disintegration of individual
sections, field failure) the need for developing technological recommendations for their repair
is demonstrated. The analysis of existing technological methods for restoring worn surfaces of
parts is shown. The technique for applying the method of electrospark alloying to repair
bearing liners is represented. The technologies of applying combined electrospark coatings to
increase the adhesion strength of the substrate to the antifriction Babbit layer are described.
There have been revealed the correlation dependences of the quality characteristics of the
Babbit coatings restored by the method of electrospark alloying versus the technological
parameters of the process. This makes it possible to significantly implement the methodology
for controlling the surface layer quality while manufacturing and repairing the products with
Babbit coatings. A technique has been developed for determining the mass transfer equation
constants and for predicting the roughness. The mathematical models have been proposed to
specify the quality parameters of the layers being formed in the course of the Babbit coating
restoration based on the energy parameters of the electrospark alloying plant. |
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