WAYS OF DEVELOPMENT OF GAS THERMAL SPRAYING METHODS FOR IMPROVING ENERGY EFFICIENCY IN THE REPAIR OF AGRICULTURAL MACHINERY

Authors

DOI:

https://doi.org/10.31891/2307-5732-2024-331-5

Keywords:

spraying, surface layer, particle, application, coating characteristics, working environment, speed

Abstract

The authors of the article consider the problems of energy consumption during the repair of agricultural machinery and propose ways to solve them through the improvement of gas-thermal spraying.

The paper analyzes modern technologies of gas-thermal spraying and identifies key aspects that affect the energy efficiency of this process. In particular, the use of the latest materials, optimization of spraying parameters and introduction of automated control systems are considered.

The authors of the article consider in detail the advantages and disadvantages of existing methods of gas thermal spraying, highlighting problematic issues related to energy consumption and low productivity. On the basis of this analysis, specific ways of development and improvement of methods aimed at increasing the energy efficiency of gas-thermal spraying in the repair of agricultural machines are proposed.

In particular, the article considers the possibility of using the latest energy-saving technologies, the introduction of renewable energy sources and the optimization of equipment operation processes. The prospects for the application of intelligent management and monitoring systems, which will contribute to the optimal use of energy resources, are highlighted.

This article serves as an important contribution to the understanding of the problems of energy efficiency of gas-thermal spraying in the repair of agricultural machinery and determines directions for further research and the implementation of innovative approaches in the restoration of agricultural machinery.

Published

2024-02-29

How to Cite

WAYS OF DEVELOPMENT OF GAS THERMAL SPRAYING METHODS FOR IMPROVING ENERGY EFFICIENCY IN THE REPAIR OF AGRICULTURAL MACHINERY. (2024). Herald of Khmelnytskyi National University. Technical Sciences, 331(1), 44-47. https://doi.org/10.31891/2307-5732-2024-331-5