Optimization of the parameters of a partially regular microrelief by vibration rolling method

Experience of operating machines shows that their quality depends on the nature of the contact of mating parts. The irregular nature of the surface microrelief, which is due to traditional treatment methods used, arises difficulties in solving three main problems of microgeometry optimization: relia...

Full description

Bibliographic Details
Main Authors: Talamanov Valeriy, Kozenkova Galina, Kozenkov Vladimir, Kondratyev Sergey, Heckert Evgeniy
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/102/e3sconf_ipdme2021_00017.pdf
_version_ 1818978828950700032
author Talamanov Valeriy
Kozenkova Galina
Kozenkov Vladimir
Kondratyev Sergey
Heckert Evgeniy
author_facet Talamanov Valeriy
Kozenkova Galina
Kozenkov Vladimir
Kondratyev Sergey
Heckert Evgeniy
author_sort Talamanov Valeriy
collection DOAJ
description Experience of operating machines shows that their quality depends on the nature of the contact of mating parts. The irregular nature of the surface microrelief, which is due to traditional treatment methods used, arises difficulties in solving three main problems of microgeometry optimization: reliable, theoretically substantiated normalization, technological support, accurate measurement and control. This determined the direction in solving the problem of increasing the accuracy and reliability of the surface quality normalization, that is the microrelief normalization. At present, there are a large number of technological methods for surface treatment aimed to form a regular microrelief on it. One of the most common and studied methods for the regular microrelief formation is the vibration rolling method based on thin plastic deformation of the surface metal layers and a complex relative displacement of the treated surface and the deforming element. Significant progress in the surface quality normalization was achieved after the introduction of GOST 24773-81, the standard for regular microreliefs. For example, the nomenclature of parameters and characteristics of partially regular microreliefs includes the relative area occupied by regular inhomogeneities FH. FH is a value expressed as a percentage of the area occupied by regular inhomogeneities to the area of the treated surface. If FH is determined for the 2A·Sk area within the boundaries of a microrelief element at different axial steps of regular inhomogeneities, the microgeometry of a partially regular microrelief can be described ambiguously. To avoid this, it is necessary to consider the multiplicity of the ratio of the amplitude A to the axial step So.
first_indexed 2024-12-20T16:49:51Z
format Article
id doaj.art-9e9e0dc5b0764da8b435aa8d14818c01
institution Directory Open Access Journal
issn 2267-1242
language English
last_indexed 2024-12-20T16:49:51Z
publishDate 2021-01-01
publisher EDP Sciences
record_format Article
series E3S Web of Conferences
spelling doaj.art-9e9e0dc5b0764da8b435aa8d14818c012022-12-21T19:32:51ZengEDP SciencesE3S Web of Conferences2267-12422021-01-013260001710.1051/e3sconf/202132600017e3sconf_ipdme2021_00017Optimization of the parameters of a partially regular microrelief by vibration rolling methodTalamanov ValeriyKozenkova GalinaKozenkov VladimirKondratyev SergeyHeckert EvgeniyExperience of operating machines shows that their quality depends on the nature of the contact of mating parts. The irregular nature of the surface microrelief, which is due to traditional treatment methods used, arises difficulties in solving three main problems of microgeometry optimization: reliable, theoretically substantiated normalization, technological support, accurate measurement and control. This determined the direction in solving the problem of increasing the accuracy and reliability of the surface quality normalization, that is the microrelief normalization. At present, there are a large number of technological methods for surface treatment aimed to form a regular microrelief on it. One of the most common and studied methods for the regular microrelief formation is the vibration rolling method based on thin plastic deformation of the surface metal layers and a complex relative displacement of the treated surface and the deforming element. Significant progress in the surface quality normalization was achieved after the introduction of GOST 24773-81, the standard for regular microreliefs. For example, the nomenclature of parameters and characteristics of partially regular microreliefs includes the relative area occupied by regular inhomogeneities FH. FH is a value expressed as a percentage of the area occupied by regular inhomogeneities to the area of the treated surface. If FH is determined for the 2A·Sk area within the boundaries of a microrelief element at different axial steps of regular inhomogeneities, the microgeometry of a partially regular microrelief can be described ambiguously. To avoid this, it is necessary to consider the multiplicity of the ratio of the amplitude A to the axial step So.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/102/e3sconf_ipdme2021_00017.pdf
spellingShingle Talamanov Valeriy
Kozenkova Galina
Kozenkov Vladimir
Kondratyev Sergey
Heckert Evgeniy
Optimization of the parameters of a partially regular microrelief by vibration rolling method
E3S Web of Conferences
title Optimization of the parameters of a partially regular microrelief by vibration rolling method
title_full Optimization of the parameters of a partially regular microrelief by vibration rolling method
title_fullStr Optimization of the parameters of a partially regular microrelief by vibration rolling method
title_full_unstemmed Optimization of the parameters of a partially regular microrelief by vibration rolling method
title_short Optimization of the parameters of a partially regular microrelief by vibration rolling method
title_sort optimization of the parameters of a partially regular microrelief by vibration rolling method
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/102/e3sconf_ipdme2021_00017.pdf
work_keys_str_mv AT talamanovvaleriy optimizationoftheparametersofapartiallyregularmicroreliefbyvibrationrollingmethod
AT kozenkovagalina optimizationoftheparametersofapartiallyregularmicroreliefbyvibrationrollingmethod
AT kozenkovvladimir optimizationoftheparametersofapartiallyregularmicroreliefbyvibrationrollingmethod
AT kondratyevsergey optimizationoftheparametersofapartiallyregularmicroreliefbyvibrationrollingmethod
AT heckertevgeniy optimizationoftheparametersofapartiallyregularmicroreliefbyvibrationrollingmethod