Mixed Lubrication Analysis of Vane Sliding Surface in Rotary Compressor Mechanisms

Numerical analysis for mixed lubrication has been performed in order to investigate the lubrication characteristics of the sliding surface of the vane in a rotary compressor. The modified Reynolds equation and the elastic contact equation, considering the surface roughness, are solved as a coupled p...

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Autores principales: Yasutaka Ito, Hitoshi Hattori, Kazuhiko Miura, Takuya Hirayama
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Lenguaje:EN
Publicado: Japanese Society of Tribologists 2007
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Acceso en línea:https://doaj.org/article/ecb89cb652f140c1a118f8c8524d67f6
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spelling oai:doaj.org-article:ecb89cb652f140c1a118f8c8524d67f62021-11-05T09:29:49ZMixed Lubrication Analysis of Vane Sliding Surface in Rotary Compressor Mechanisms1881-219810.2474/trol.2.73https://doaj.org/article/ecb89cb652f140c1a118f8c8524d67f62007-07-01T00:00:00Zhttps://www.jstage.jst.go.jp/article/trol/2/3/2_3_73/_pdf/-char/enhttps://doaj.org/toc/1881-2198Numerical analysis for mixed lubrication has been performed in order to investigate the lubrication characteristics of the sliding surface of the vane in a rotary compressor. The modified Reynolds equation and the elastic contact equation, considering the surface roughness, are solved as a coupled problem. Using this analysis, the lubrication characteristics of the sliding surface of the vane are investigated by parameter survey on the design parameters such as the vane-slot length and the clearance between the vane and vane-slot. It is found that the influences of the vane-slot length on the friction loss were larger than that of the clearance.Yasutaka ItoHitoshi HattoriKazuhiko MiuraTakuya HirayamaJapanese Society of Tribologistsarticlerotary compressorvanevane-slotmixed lubricationsurface roughnessfrictionPhysicsQC1-999Engineering (General). Civil engineering (General)TA1-2040Mechanical engineering and machineryTJ1-1570ChemistryQD1-999ENTribology Online, Vol 2, Iss 3, Pp 73-77 (2007)
institution DOAJ
collection DOAJ
language EN
topic rotary compressor
vane
vane-slot
mixed lubrication
surface roughness
friction
Physics
QC1-999
Engineering (General). Civil engineering (General)
TA1-2040
Mechanical engineering and machinery
TJ1-1570
Chemistry
QD1-999
spellingShingle rotary compressor
vane
vane-slot
mixed lubrication
surface roughness
friction
Physics
QC1-999
Engineering (General). Civil engineering (General)
TA1-2040
Mechanical engineering and machinery
TJ1-1570
Chemistry
QD1-999
Yasutaka Ito
Hitoshi Hattori
Kazuhiko Miura
Takuya Hirayama
Mixed Lubrication Analysis of Vane Sliding Surface in Rotary Compressor Mechanisms
description Numerical analysis for mixed lubrication has been performed in order to investigate the lubrication characteristics of the sliding surface of the vane in a rotary compressor. The modified Reynolds equation and the elastic contact equation, considering the surface roughness, are solved as a coupled problem. Using this analysis, the lubrication characteristics of the sliding surface of the vane are investigated by parameter survey on the design parameters such as the vane-slot length and the clearance between the vane and vane-slot. It is found that the influences of the vane-slot length on the friction loss were larger than that of the clearance.
format article
author Yasutaka Ito
Hitoshi Hattori
Kazuhiko Miura
Takuya Hirayama
author_facet Yasutaka Ito
Hitoshi Hattori
Kazuhiko Miura
Takuya Hirayama
author_sort Yasutaka Ito
title Mixed Lubrication Analysis of Vane Sliding Surface in Rotary Compressor Mechanisms
title_short Mixed Lubrication Analysis of Vane Sliding Surface in Rotary Compressor Mechanisms
title_full Mixed Lubrication Analysis of Vane Sliding Surface in Rotary Compressor Mechanisms
title_fullStr Mixed Lubrication Analysis of Vane Sliding Surface in Rotary Compressor Mechanisms
title_full_unstemmed Mixed Lubrication Analysis of Vane Sliding Surface in Rotary Compressor Mechanisms
title_sort mixed lubrication analysis of vane sliding surface in rotary compressor mechanisms
publisher Japanese Society of Tribologists
publishDate 2007
url https://doaj.org/article/ecb89cb652f140c1a118f8c8524d67f6
work_keys_str_mv AT yasutakaito mixedlubricationanalysisofvaneslidingsurfaceinrotarycompressormechanisms
AT hitoshihattori mixedlubricationanalysisofvaneslidingsurfaceinrotarycompressormechanisms
AT kazuhikomiura mixedlubricationanalysisofvaneslidingsurfaceinrotarycompressormechanisms
AT takuyahirayama mixedlubricationanalysisofvaneslidingsurfaceinrotarycompressormechanisms
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