Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated Tool

Introduction. The paper presents the results of experimental studies of power parameters when hard alloy steels are machined with tools, the cutting units of which have multilayer hard, heat-resistant and wear-resistant coatings. The obtained data will make it possible to optimize machining hard-to-...

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Main Author: Vladimir A. Skryabin
Format: Article
Language:Russian
Published: National Research Mordovia State University 2022-03-01
Series:Регионология
Subjects:
Online Access:http://vestnik.mrsu.ru/index.php/en/articles2-en/105-21-4/896-10-15507-0236-2910-031-202104-2
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author Vladimir A. Skryabin
author_facet Vladimir A. Skryabin
author_sort Vladimir A. Skryabin
collection DOAJ
description Introduction. The paper presents the results of experimental studies of power parameters when hard alloy steels are machined with tools, the cutting units of which have multilayer hard, heat-resistant and wear-resistant coatings. The obtained data will make it possible to optimize machining hard-to-machine materials. Materials and Methods. The aim of the study is to measure the power parameters of turning products and to create experimental formulas of power parameters for different technological modes. For this purpose, a special measuring multicomponent complex was used to estimate the influence of the mode parameters on the change in the cutting force components. Results. The numerically controlled machine tool was retooled by combining it with a three-component dynamometer and tooling. The cutting unit of the tool was coated with a multi-layer hard, heat-resistant and wear-resistant coating. The tool was equipped with instruments connected to a personal computer for measuring and processing experimental data. According to the results of the study, there have been obtained graphical dependences and empirical formulas, which take into account the influence of the mode parameters on the cutting force components when machining the units of alloy steels of high hardness, heat resistance and wear resistance. Discussion and Conclusion. The study allowed us to obtain experimental formulas of cutting force components for different mode parameters when machining parts by the tool equipped with cutting plates. The plates are coated with multilayer hard and wear-resistant coatings of titanium carbonitride, aluminum oxide and nickel nitride. The coating increases significantly the hardness, heat and wears resistance of the tool cutting unit and provides quality machining.
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spelling doaj.art-74660d571c9f4c96ad4a764e1dee0cde2022-12-21T23:33:04ZrusNational Research Mordovia State UniversityРегионология2413-14072587-85492022-03-0131451852910.15507/2658-4123.031.202104.518-529Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated ToolVladimir A. Skryabin0https://orcid.org/0000-0001-7156-9198Penza State University Introduction. The paper presents the results of experimental studies of power parameters when hard alloy steels are machined with tools, the cutting units of which have multilayer hard, heat-resistant and wear-resistant coatings. The obtained data will make it possible to optimize machining hard-to-machine materials. Materials and Methods. The aim of the study is to measure the power parameters of turning products and to create experimental formulas of power parameters for different technological modes. For this purpose, a special measuring multicomponent complex was used to estimate the influence of the mode parameters on the change in the cutting force components. Results. The numerically controlled machine tool was retooled by combining it with a three-component dynamometer and tooling. The cutting unit of the tool was coated with a multi-layer hard, heat-resistant and wear-resistant coating. The tool was equipped with instruments connected to a personal computer for measuring and processing experimental data. According to the results of the study, there have been obtained graphical dependences and empirical formulas, which take into account the influence of the mode parameters on the cutting force components when machining the units of alloy steels of high hardness, heat resistance and wear resistance. Discussion and Conclusion. The study allowed us to obtain experimental formulas of cutting force components for different mode parameters when machining parts by the tool equipped with cutting plates. The plates are coated with multilayer hard and wear-resistant coatings of titanium carbonitride, aluminum oxide and nickel nitride. The coating increases significantly the hardness, heat and wears resistance of the tool cutting unit and provides quality machining.http://vestnik.mrsu.ru/index.php/en/articles2-en/105-21-4/896-10-15507-0236-2910-031-202104-2turningcomponents of cutting forcesoperating parametersmachine toolmodernization
spellingShingle Vladimir A. Skryabin
Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated Tool
Регионология
turning
components of cutting forces
operating parameters
machine tool
modernization
title Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated Tool
title_full Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated Tool
title_fullStr Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated Tool
title_full_unstemmed Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated Tool
title_short Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated Tool
title_sort features of machining rotor shafts of diesel engine turbochargers with a multilayer coated tool
topic turning
components of cutting forces
operating parameters
machine tool
modernization
url http://vestnik.mrsu.ru/index.php/en/articles2-en/105-21-4/896-10-15507-0236-2910-031-202104-2
work_keys_str_mv AT vladimiraskryabin featuresofmachiningrotorshaftsofdieselengineturbochargerswithamultilayercoatedtool