SATURATION OF THE SURFACE LAYER OF THE MIRROR CYLINDER OF PISTON INTERNAL COMBUSTION ENGINES IS HIGHLY ORGANIZED FORMS OF CARBON
Aim. The purpose of the real research also is consideration of a problem of creation in a blanket of a mirror of the working cylinder of the structure providing antiwear and antifrictional properties.Methods. Opening of new forms of carbon - fullerenes and studying of their properties has channelize...
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Daghestan State Technical University
2016-12-01
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Series: | Vestnik Dagestanskogo Gosudarstvennogo Tehničeskogo Universiteta: Tehničeskie Nauki |
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Online Access: | https://vestnik.dgtu.ru/jour/article/view/299 |
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doaj-b2c1ed44a3514fbe94f6a3e95478cc762021-07-28T20:54:34ZrusDaghestan State Technical UniversityVestnik Dagestanskogo Gosudarstvennogo Tehničeskogo Universiteta: Tehničeskie Nauki 2073-61852542-095X2016-12-01423273310.21822/2073-6185-2016-42-3-27-33283SATURATION OF THE SURFACE LAYER OF THE MIRROR CYLINDER OF PISTON INTERNAL COMBUSTION ENGINES IS HIGHLY ORGANIZED FORMS OF CARBONA. F. Dorokhov0N. K. Sanaev1A. G. Provotar2Astrakhan State Technical UniversityDaghestan State Technical UniversityAstrakhan branch Volga State University of water transportAim. The purpose of the real research also is consideration of a problem of creation in a blanket of a mirror of the working cylinder of the structure providing antiwear and antifrictional properties.Methods. Opening of new forms of carbon - fullerenes and studying of their properties has channelized development of micromechanics of friction and wear on the basis of formation of new qualities of a blanket in couples of friction by saturation of its crystal structure by convex many-sided molecules of fullerenes, mainly to C60 and C70.Results. In such cases the most acceptable will be technologies of drawing, for example – by means of a bezabrazivny honingovaniye (charging) of DVS cylinders. And new in this direction the fact that in this case the aim of introduction of fullerenes, by means of their diffusion, in a crystal lattice of a blanket of the detail which is exposed to friction and wear is pursued is important.Conclusion. It is proved that the combination of temperature, barometric and intense factors at introduction of an implant in a blanket creates an opportunity to avoid during the operation of the engine of emergence of the thermoelastic forces seeking to push out bezabrazivny structure from hollows of a microrelief of rings and rest friction forces.https://vestnik.dgtu.ru/jour/article/view/299fullerenesdiffusionbezabrazivny honingovaniyechargingdiffusion coefficientcylinder mirror |
collection |
DOAJ |
language |
Russian |
format |
Article |
sources |
DOAJ |
author |
A. F. Dorokhov N. K. Sanaev A. G. Provotar |
spellingShingle |
A. F. Dorokhov N. K. Sanaev A. G. Provotar SATURATION OF THE SURFACE LAYER OF THE MIRROR CYLINDER OF PISTON INTERNAL COMBUSTION ENGINES IS HIGHLY ORGANIZED FORMS OF CARBON Vestnik Dagestanskogo Gosudarstvennogo Tehničeskogo Universiteta: Tehničeskie Nauki fullerenes diffusion bezabrazivny honingovaniye charging diffusion coefficient cylinder mirror |
author_facet |
A. F. Dorokhov N. K. Sanaev A. G. Provotar |
author_sort |
A. F. Dorokhov |
title |
SATURATION OF THE SURFACE LAYER OF THE MIRROR CYLINDER OF PISTON INTERNAL COMBUSTION ENGINES IS HIGHLY ORGANIZED FORMS OF CARBON |
title_short |
SATURATION OF THE SURFACE LAYER OF THE MIRROR CYLINDER OF PISTON INTERNAL COMBUSTION ENGINES IS HIGHLY ORGANIZED FORMS OF CARBON |
title_full |
SATURATION OF THE SURFACE LAYER OF THE MIRROR CYLINDER OF PISTON INTERNAL COMBUSTION ENGINES IS HIGHLY ORGANIZED FORMS OF CARBON |
title_fullStr |
SATURATION OF THE SURFACE LAYER OF THE MIRROR CYLINDER OF PISTON INTERNAL COMBUSTION ENGINES IS HIGHLY ORGANIZED FORMS OF CARBON |
title_full_unstemmed |
SATURATION OF THE SURFACE LAYER OF THE MIRROR CYLINDER OF PISTON INTERNAL COMBUSTION ENGINES IS HIGHLY ORGANIZED FORMS OF CARBON |
title_sort |
saturation of the surface layer of the mirror cylinder of piston internal combustion engines is highly organized forms of carbon |
publisher |
Daghestan State Technical University |
series |
Vestnik Dagestanskogo Gosudarstvennogo Tehničeskogo Universiteta: Tehničeskie Nauki |
issn |
2073-6185 2542-095X |
publishDate |
2016-12-01 |
description |
Aim. The purpose of the real research also is consideration of a problem of creation in a blanket of a mirror of the working cylinder of the structure providing antiwear and antifrictional properties.Methods. Opening of new forms of carbon - fullerenes and studying of their properties has channelized development of micromechanics of friction and wear on the basis of formation of new qualities of a blanket in couples of friction by saturation of its crystal structure by convex many-sided molecules of fullerenes, mainly to C60 and C70.Results. In such cases the most acceptable will be technologies of drawing, for example – by means of a bezabrazivny honingovaniye (charging) of DVS cylinders. And new in this direction the fact that in this case the aim of introduction of fullerenes, by means of their diffusion, in a crystal lattice of a blanket of the detail which is exposed to friction and wear is pursued is important.Conclusion. It is proved that the combination of temperature, barometric and intense factors at introduction of an implant in a blanket creates an opportunity to avoid during the operation of the engine of emergence of the thermoelastic forces seeking to push out bezabrazivny structure from hollows of a microrelief of rings and rest friction forces. |
topic |
fullerenes diffusion bezabrazivny honingovaniye charging diffusion coefficient cylinder mirror |
url |
https://vestnik.dgtu.ru/jour/article/view/299 |
work_keys_str_mv |
AT afdorokhov saturationofthesurfacelayerofthemirrorcylinderofpistoninternalcombustionenginesishighlyorganizedformsofcarbon AT nksanaev saturationofthesurfacelayerofthemirrorcylinderofpistoninternalcombustionenginesishighlyorganizedformsofcarbon AT agprovotar saturationofthesurfacelayerofthemirrorcylinderofpistoninternalcombustionenginesishighlyorganizedformsofcarbon |
_version_ |
1721264851621249024 |