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An analytical approach on the tribological behaviour of pocketed sliderbearings with boundary slip including cavitation (Article)

, , ,

Laboratory for Surface Technology and Tribology, Faculty of Engineering Technology, University of Twente, Enschede,NetherlandsLaboratory for Engineering Design and Tribology, Department of Mechanical Engineering, University of Diponegoro,

Semarang, Indonesia

AbstractSlider bearing performance depends on the boundary conditions at the interface between the solid surfaces and thefluid. This paper presents the combined effect of pockets and boundary slip on the load support and friction of parallelsliding systems using analytical solutions for a simple pocketed bearing. The effect of cavitation was of particularinterest with respect to the inlet suction mechanism. It was demonstrated that applying boundary slip in a pocketedslider bearing gives a reduction in load support compared with the textured bearing without wall slip. Adding slip overthe whole surface could retard the presence of cavitation. The influence of boundary slip is explored, and was found tosignificantly affect the frictional behaviour. Copyright © 2016 John Wiley & Sons, Ltd. Copyright © 2016 John Wiley& Sons, Ltd.

SciVal Topic Prominence

Topic:

Prominence percentile: 95.394

Author keywordsanalytical method friction load support slider bearing slip

Indexed keywords

Engineeringcontrolled terms:

Cavitation Copyrights Friction

Engineeringuncontrolled terms

Analytical approach Analytical method Slider bearings Sliding systems slip

Suction mechanism Textured bearings Tribological behaviour

Engineering mainheading:

Bearings (structural)

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Lubrication ScienceVolume 29, Issue 3, 1 April 2017, Pages 133-152

Muchammad, M.a,b Tauviqirrahman, M.b Jamari, J.b Schipper, D.J.a

a

b

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Drag reduction | Molecular dynamics | Boundary slip

ISSN: 09540075CODEN: LUSCESource Type: JournalOriginal language: English

DOI: 10.1002/ls.1361Document Type: ArticlePublisher: John Wiley and Sons Ltd

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Etsion, I., Halperin, G., Brizmer, V., Kligerman, Y.

(2004) Tribology Letters, 17 (2), pp. 295-300.  .doi: 10.1023/B:TRIL.0000032467.88800.59

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Brajdic-Mitidieri, P., Gosman, A.D., Ioannides, S., Spikes, H.A.

(2004) Proceedings of the ASME/STLE International Joint Tribology Conference, IJTC 2004, (PART A), pp.737-747.  .ISBN: 0791841812

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Tauviqirrahman, M., Muchammad, Ismail, R., Jamari, Schipper, D.J.

(Open Access)

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Wang, L.-L., Lu, C.-H.

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Muchammad, M.; Laboratory for Surface Technology and Tribology, Faculty of Engineering Technology, Universityof Twente, Enschede, Netherlands; email: © Copyright 2017 Elsevier B.V., All rights reserved.

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EDITORMitjan KalinLaboratory for Tribology and InterfaceNanotechnologyFaculty of Mechanical EngineeringUniversity of LjubljanaSlovenia

EDITOR EMERITUSCarl E. Snyder, JrAir Force Research LaboratoryDayton, OhioUSA

H. A. SpikesImperial College, University of LondonUK

EDITORIAL BOARD

Koshi AdachiTohoku UniversityJapan

Pranesh AswathUniversity of TexasUSA

Scott BairGeorgia Institute ofTechnologyUS

Wilfried J BartzTechnische Akademie EsslingenGermany

Benyebka Bou-SaidINSA-LyonFrance

Philippa CannImperial CollegeUK

Mike ChandrossSandia National LaboratoriesUS

Enrico CiulliUniversity of PisaItaly

Fabrice DassenoyEcole Centrale de LyonFrance

Patrick De BaetsGhent University

Donfeng DiaoXi'an Jiaotong

Nicole DoerrAC2T research GmbH

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Belgium UniversityChina

Austria

Rob Dwyer-JoyceUniversity of She�eldUK

Ali ErdemirArgonne NationalLaboratoryUS

George R FenskeArgonne NationalLaboratoryUS

Luis FerreiraUniversity of PortoPortugal

Friedrich FranekVienna University ofTribologyAustria

Lois J GschwenderUS Air ForceUS

Tabassumul HaqueExxonMobil Research and EngineeringUS

Tomoko HirayamaDoshisha UniversityJapan

Sta�an JacobsonUppsala UniversitySweden

Roland LarssonLulea University of TechnologySweden

Hong LiangTexas A&M UniversityUS

Piet LugtSKF Engineering andResearch CentreNetherlands

Jean Michel MartinECL LTDSFrance

Ichiro MinamiIwate UniversityJapan

Clotilde MinfrayEcole Centrale de LyonFrance

Ardian MorinaUniversity of LeedsUK

Daniel NeliasINSA LyonFrance

Somuri PrasadSandia NationalLaboratoriesUS

M. Clelia RighiUniversity of Modena and Reggio EmiliaItaly

Leslie R RudnickUltrachem Inc.US

Greg SawyerUniversity of FloridaUS

Tom ScharfThe University of North TexasUS

Dik SchipperUniversity of TwenteNetherlands

Nic SpencerETH ZurichSwitzerland

Joichi SugimuraKyushu UniversityJapan

Victoria van CampSKF LubricationSystemsUS

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Research Articles ‐ LS

An analytical approach on the tribological behaviour of pocketed slider bearings withAn analyticalboundary slip including cavitation

M. Muchammad, Mohammad Tauviqirrahman, J. Jamari, Dirk Jan Schipper

Pages: 133-152 First Published: 07 November 2016

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In�uence of surface texture shape, geometry and orientation on hydrodynamiclubrication performance of plane‐to‐plane slider surfaces

M. S. Uddin, Tom Ibatan, S. Shankar

Pages: 153-181 First Published: 18 November 2016

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Optimising the design of textured surfaces for reducing lubricated friction coe�cient

Javier Echávarri Otero, Eduardo de la Guerra Ochoa, Irene Bellón Vallinot, Enrique Chacón Tanarro

Pages: 183-199 First Published: 10 November 2016

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8/5/2019 Lubrication Science : Vol 29 , No 3

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