METHODS OF PREVENTING PARTS CORROSION IN INDUSTRY
Main Article Content
Abstract
It is known that the presence of chloride and other salt compounds in the extraction of minerals from the surface and underground, along with the abrasive effect on metal structures, also causes corrosion. In this article, in order to increase the service life of metal structures, research was conducted on increasing the durability of their surfaces and using various coating technologies to increase their resistance to wear and corrosion.
Downloads
Article Details
Issue
Section

This work is licensed under a Creative Commons Attribution 4.0 International License.
Public License Terms
(For Open Journal Systems (OJS))
-
Copyright:
The copyright of the published article remains with the author(s). However, after publication, the article is distributed on the OJS platform under the Creative Commons (CC BY) license. -
License Type:
This article is distributed under the Creative Commons Attribution 4.0 International (CC BY 4.0) license. This means users can utilize the article under the following conditions:- Copy and distribute: The text of the article or its parts can be freely distributed.
- Quote and analyze: Parts of the article can be used for quoting and analysis.
- Free use: The article can be freely used for research and educational purposes.
- Attribution: Users must provide proper attribution and reference to the original source.
-
Commercial use:
The article can be used for commercial purposes, provided that authorship and source are properly cited. -
Document modification:
The text or content of the article can be modified or adapted, as long as it does not harm the authorship. -
Liability disclaimer:
The author(s) are responsible for the accuracy of the information contained in the article. The editorial team of the platform is not liable for any damages resulting from the use of this information. -
Public usage obligations:
The content of the article must be used only in accordance with legal and ethical standards. Unauthorized use is strictly prohibited.
Note:
These license terms are designed to ensure transparency and openness in material usage. By accepting these terms, you agree to the adaptation and distribution of the article content under the terms of the Creative Commons license.
Link: Creative Commons Attribution 4.0 International (CC BY 4.0)
How to Cite
References
[1] Бойназаров, У. Р., Юршев, В. И., & Петрова, Л. Г. (2020, January 23–25). Изгибная прочность оксинитридных покрытий. В Университетский комплекс как региональный центр образования, науки и культуры: Материалы Всероссийской научно-методической конференции (с международным участием) (сс. 490–495). Оренбург, Россия.
[2] Бойназаров, У. Р., & Раззоков, Т. Х. (2020, July 26). Микротвердость диффузионных нитрооксидных слоев. Universum: технические науки.
[3] Бойназаров, У. Р., & Хасанов, А. С. (2023). Коррозионная стойкость оксинитридных защитных покрытий с последующим оксидированием в парах воды и в растворах медного купороса. Journal of Advances in Engineering Technology. Рег. №0158.
[4] Boynazarov, U. R. (2025). Increasing corrosion resistance and abrasive resistance of metal structures based on azoting technology in liquid and gaseous environments. Journal of Multidisciplinary Bulletin, 8(5). https://doi.org/10.5281/zenodo.15684862