Research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow discharge

As a result of the studies, the regularities of the influence of vacuum thermocyclic nitriding in a pulsating glow discharge plasma  parameters on the microhardness, the diffusion saturation depth, the magnitude and distribution of residual stresses in the hardened layers of steel surfaces are estab...

ver descrição completa

Detalhes bibliográficos
Principais autores: A. Rutkovskiy, O. Radko, Ye. Solovykh, S. Katerinich, A. Solovykh
Formato: Artigo
Idioma:English
Publicado em: Khmelhitsky National University, Lublin University of Technology 2023-12-01
coleção:Проблеми трибології
Assuntos:
Acesso em linha:https://tribology.khnu.km.ua/index.php/ProbTrib/article/view/933
_version_ 1827399198441472000
author A. Rutkovskiy
O. Radko
Ye. Solovykh
S. Katerinich
A. Solovykh
author_facet A. Rutkovskiy
O. Radko
Ye. Solovykh
S. Katerinich
A. Solovykh
author_sort A. Rutkovskiy
collection DOAJ
description As a result of the studies, the regularities of the influence of vacuum thermocyclic nitriding in a pulsating glow discharge plasma  parameters on the microhardness, the diffusion saturation depth, the magnitude and distribution of residual stresses in the hardened layers of steel surfaces are established. Based on the use of expert assessment methods and the results of a series of screening experiments, optimization criteria (endurance limit and corrosion resistance) and controlled factors for mathematical modeling of the formation of strengthened ion-nitrated surface layers are determined. A mathematical model of the technology of the formation of reinforced surfaces of the vacuum thermocyclic nitriding in a pulsating glow discharge plasma  according to the criteria of endurance and corrosion resistance is obtained. An analysis of the studies showed that there are no general conclusions and recommendations on the selection of optimal technological parameters of the vacuum thermocyclic nitriding in a pulsating glow discharge plasma that would be used for the practical application of this technology. These circumstances confirm the need for further study of the vacuum thermocyclic nitriding in a plasma of a pulsating glow discharge of vacuum thermocyclic nitriding in a pulsating glow discharge plasma  technology and the feasibility of its optimization.
first_indexed 2024-03-08T19:42:19Z
format Article
id doaj.art-3c45830114584aeab55c8892b9d5c2e2
institution Directory Open Access Journal
issn 2079-1372
language English
last_indexed 2024-03-08T19:42:19Z
publishDate 2023-12-01
publisher Khmelhitsky National University, Lublin University of Technology
record_format Article
series Проблеми трибології
spelling doaj.art-3c45830114584aeab55c8892b9d5c2e22023-12-24T16:49:23ZengKhmelhitsky National University, Lublin University of TechnologyПроблеми трибології2079-13722023-12-01284/110768410.31891/2079-1372-2023-110-4-76-84839Research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow dischargeA. Rutkovskiy0O. Radko1Ye. Solovykh2S. Katerinich3A. Solovykh4Institut problem micnosti imeni G.S. Pisarenka of the National Academy of Sciences of Ukraine, KyivThe National Defence University of Ukraine, KyivCentral Ukrainian National Technical UniversityCentral Ukrainian National Technical UniversityCentral Ukrainian National Technical UniversityAs a result of the studies, the regularities of the influence of vacuum thermocyclic nitriding in a pulsating glow discharge plasma  parameters on the microhardness, the diffusion saturation depth, the magnitude and distribution of residual stresses in the hardened layers of steel surfaces are established. Based on the use of expert assessment methods and the results of a series of screening experiments, optimization criteria (endurance limit and corrosion resistance) and controlled factors for mathematical modeling of the formation of strengthened ion-nitrated surface layers are determined. A mathematical model of the technology of the formation of reinforced surfaces of the vacuum thermocyclic nitriding in a pulsating glow discharge plasma  according to the criteria of endurance and corrosion resistance is obtained. An analysis of the studies showed that there are no general conclusions and recommendations on the selection of optimal technological parameters of the vacuum thermocyclic nitriding in a pulsating glow discharge plasma that would be used for the practical application of this technology. These circumstances confirm the need for further study of the vacuum thermocyclic nitriding in a plasma of a pulsating glow discharge of vacuum thermocyclic nitriding in a pulsating glow discharge plasma  technology and the feasibility of its optimization.https://tribology.khnu.km.ua/index.php/ProbTrib/article/view/933vacuum thermocyclic nitriding, mathematical model, technological process, plasma, pulsating glow discharge
spellingShingle A. Rutkovskiy
O. Radko
Ye. Solovykh
S. Katerinich
A. Solovykh
Research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow discharge
Проблеми трибології
vacuum thermocyclic nitriding, mathematical model, technological process, plasma, pulsating glow discharge
title Research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow discharge
title_full Research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow discharge
title_fullStr Research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow discharge
title_full_unstemmed Research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow discharge
title_short Research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow discharge
title_sort research of the vacuum thermocyclic nitrogen process in a plasma pulsing glow discharge
topic vacuum thermocyclic nitriding, mathematical model, technological process, plasma, pulsating glow discharge
url https://tribology.khnu.km.ua/index.php/ProbTrib/article/view/933
work_keys_str_mv AT arutkovskiy researchofthevacuumthermocyclicnitrogenprocessinaplasmapulsingglowdischarge
AT oradko researchofthevacuumthermocyclicnitrogenprocessinaplasmapulsingglowdischarge
AT yesolovykh researchofthevacuumthermocyclicnitrogenprocessinaplasmapulsingglowdischarge
AT skaterinich researchofthevacuumthermocyclicnitrogenprocessinaplasmapulsingglowdischarge
AT asolovykh researchofthevacuumthermocyclicnitrogenprocessinaplasmapulsingglowdischarge