Parametric investigations of short length hydro-dynamically lubricated conical journal bearing

Due to the growing need for compact size fluid film bearings, efforts are being made to explore the performance of hydro-dynamically lubricated short length conical journal bearing. The combined radial and axial load carrying features of these bearings emerge as a better option to replace the two se...

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Main Authors: Ajay K. Gangrade, Vikas M. Phalle, S. S. Mantha
Format: Article
Language:English
Published: Malaysian Tribology Society 2018-12-01
Series:Jurnal Tribologi
Subjects:
Online Access:https://jurnaltribologi.mytribos.org/v19/JT-19-57-78.pdf
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spelling doaj-cf453ea506a94ab4989778a786561d052020-11-24T21:05:42ZengMalaysian Tribology SocietyJurnal Tribologi2289-72322018-12-01195778Parametric investigations of short length hydro-dynamically lubricated conical journal bearingAjay K. Gangrade0Vikas M. Phalle1S. S. Mantha2Veermata Jijabai Technological Institute (VJTI), INDIA.Veermata Jijabai Technological Institute (VJTI), INDIA.Veermata Jijabai Technological Institute (VJTI), INDIA.Due to the growing need for compact size fluid film bearings, efforts are being made to explore the performance of hydro-dynamically lubricated short length conical journal bearing. The combined radial and axial load carrying features of these bearings emerge as a better option to replace the two separate bearings (journal and thrust pad bearings) employed in turbo-machines and other applications. Thus, in this study, attempts have been made to investigate the performance of conical hydrodynamic journal bearing by using finite element analysis. The bearings have been investigated for semi-cone angle (γ = 10°), aspect ratio (λ = 0.5, 0.8, 1.0), journal speed (v = 2.6, 5.2 m/s) and load variations in terms of eccentricity ratio (ε) up to 0.6. Results have been presented in terms of radial and axial load carrying capacity, stiffness coefficients, damping coefficients and threshold speed. Results from the present study reveal that load carrying capacity is improved with higher aspect ratio; whereas threshold speed decreases with the increase of eccentricity ratio and aspect ratio.https://jurnaltribologi.mytribos.org/v19/JT-19-57-78.pdfConical journal bearingHydrodynamic lubricationAspect ratioEccentricity ratioFinite element analysis
collection DOAJ
language English
format Article
sources DOAJ
author Ajay K. Gangrade
Vikas M. Phalle
S. S. Mantha
spellingShingle Ajay K. Gangrade
Vikas M. Phalle
S. S. Mantha
Parametric investigations of short length hydro-dynamically lubricated conical journal bearing
Jurnal Tribologi
Conical journal bearing
Hydrodynamic lubrication
Aspect ratio
Eccentricity ratio
Finite element analysis
author_facet Ajay K. Gangrade
Vikas M. Phalle
S. S. Mantha
author_sort Ajay K. Gangrade
title Parametric investigations of short length hydro-dynamically lubricated conical journal bearing
title_short Parametric investigations of short length hydro-dynamically lubricated conical journal bearing
title_full Parametric investigations of short length hydro-dynamically lubricated conical journal bearing
title_fullStr Parametric investigations of short length hydro-dynamically lubricated conical journal bearing
title_full_unstemmed Parametric investigations of short length hydro-dynamically lubricated conical journal bearing
title_sort parametric investigations of short length hydro-dynamically lubricated conical journal bearing
publisher Malaysian Tribology Society
series Jurnal Tribologi
issn 2289-7232
publishDate 2018-12-01
description Due to the growing need for compact size fluid film bearings, efforts are being made to explore the performance of hydro-dynamically lubricated short length conical journal bearing. The combined radial and axial load carrying features of these bearings emerge as a better option to replace the two separate bearings (journal and thrust pad bearings) employed in turbo-machines and other applications. Thus, in this study, attempts have been made to investigate the performance of conical hydrodynamic journal bearing by using finite element analysis. The bearings have been investigated for semi-cone angle (γ = 10°), aspect ratio (λ = 0.5, 0.8, 1.0), journal speed (v = 2.6, 5.2 m/s) and load variations in terms of eccentricity ratio (ε) up to 0.6. Results have been presented in terms of radial and axial load carrying capacity, stiffness coefficients, damping coefficients and threshold speed. Results from the present study reveal that load carrying capacity is improved with higher aspect ratio; whereas threshold speed decreases with the increase of eccentricity ratio and aspect ratio.
topic Conical journal bearing
Hydrodynamic lubrication
Aspect ratio
Eccentricity ratio
Finite element analysis
url https://jurnaltribologi.mytribos.org/v19/JT-19-57-78.pdf
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