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2020 | OriginalPaper | Chapter

Simulation-Based Analysis of Performance Parameters of Thrust Pad Bearing Under Thin Film Lubrication with Chamfered Inlet

Authors : Poonam Kumari, Mohammad Sikandar Azam

Published in: Recent Advances in Mechanical Engineering

Publisher: Springer Singapore

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Abstract

An elastohydrodynamic numerical simulation of a thrust pad bearing with chamfering at inlet has been studied in this paper. To model the problem, a one-dimensional Reynolds equation along with elastic deformation equation in non-dimensional form has been discretized using finite difference method and solved iteratively by using an improved method. On chamfering at inlet of the bearing pad, a pressure peak gets generated near the inlet zone. This pressure peak, which is absent in non-chamfered pad, ultimately increases the load-carrying capacity of the thrust pad bearing at lower value of film thickness ratios and small film thickness. At large value of film thickness, the load capacity decreases at all film thickness ratios when chamfering is done on the bearing pad. On increasing minimum film thickness, the load capacity and coefficient of friction show more sensitivity at low value of film thickness ratios. At very high value of film thickness ratio, the change in load capacity and coefficient of friction with increasing film thickness ratios become almost negligible.

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Literature
1.
go back to reference Martin HM (1916) Lubrication of gear teeth. Engineering 102:119 Martin HM (1916) Lubrication of gear teeth. Engineering 102:119
2.
go back to reference Grubin AN (1949) Investigation of the contact of machine components. Central Sci Res Inst Tech Mech Eng 337:30 Grubin AN (1949) Investigation of the contact of machine components. Central Sci Res Inst Tech Mech Eng 337:30
3.
go back to reference Dowson D, Higginson GR (1959) A numerical solution to the elasto-hydrodynamic problem. J Mech Eng Sci 1(1):6–15CrossRef Dowson D, Higginson GR (1959) A numerical solution to the elasto-hydrodynamic problem. J Mech Eng Sci 1(1):6–15CrossRef
4.
go back to reference Dowson D (1967) Elastohydrodynamics. In: Proceedings of the institution of mechanical engineers, conference proceedings. Sage, London, pp 151–167 Dowson D (1967) Elastohydrodynamics. In: Proceedings of the institution of mechanical engineers, conference proceedings. Sage, London, pp 151–167
5.
go back to reference Johnson KL (1970) Regimes of elastohydrodynamic lubrication. J Mech Eng Sci 12(1):9–16CrossRef Johnson KL (1970) Regimes of elastohydrodynamic lubrication. J Mech Eng Sci 12(1):9–16CrossRef
6.
go back to reference Kumar R, Azam MS, Ghosh SK, Yadav S (2018) 70 years of Elastohydrodynamic Lubrication (EHL): a review on experimental techniques for film thickness and pressure measurement. MAPAN 33(4):481–491CrossRef Kumar R, Azam MS, Ghosh SK, Yadav S (2018) 70 years of Elastohydrodynamic Lubrication (EHL): a review on experimental techniques for film thickness and pressure measurement. MAPAN 33(4):481–491CrossRef
7.
go back to reference Sharma SC, Jain SC, Bharuka DK (2002) Influence of recess shape on the performance of a capillary compensated circular thrust pad hydrostatic bearing. Tribol Int 35(6):347–356CrossRef Sharma SC, Jain SC, Bharuka DK (2002) Influence of recess shape on the performance of a capillary compensated circular thrust pad hydrostatic bearing. Tribol Int 35(6):347–356CrossRef
8.
go back to reference Zouzoulas V, Papadopoulos CI (2017) 3-D thermohydrodynamic analysis of textured, grooved, pocketed and hydrophobic pivoted-pad thrust bearings. Tribol Int 110:426–440CrossRef Zouzoulas V, Papadopoulos CI (2017) 3-D thermohydrodynamic analysis of textured, grooved, pocketed and hydrophobic pivoted-pad thrust bearings. Tribol Int 110:426–440CrossRef
9.
go back to reference Kumar R, Azam MS, Ghosh SK (2017) Effect of temperature on rough EHL in slider bearing. In: 2017 International Conference on Advances in Mechanical, Industrial, Automation and Management Systems (AMIAMS). IEEE, Allahabad, pp 156–163 (2017) Kumar R, Azam MS, Ghosh SK (2017) Effect of temperature on rough EHL in slider bearing. In: 2017 International Conference on Advances in Mechanical, Industrial, Automation and Management Systems (AMIAMS). IEEE, Allahabad, pp 156–163 (2017)
10.
go back to reference Kumar R, Azam MS, Ghosh SK, Khan H (2017) Effect of surface roughness and deformation on Rayleigh step bearing under thin film lubrication. Ind Lubr Tribol 69(6):1016–1032 (2017) Kumar R, Azam MS, Ghosh SK, Khan H (2017) Effect of surface roughness and deformation on Rayleigh step bearing under thin film lubrication. Ind Lubr Tribol 69(6):1016–1032 (2017)
11.
go back to reference Wang Z, Liu Y, Wang Y, Liu X, Wang Y (2018) Influence of squeezing and interface slippage on the performance of water-lubricated tilting-pad thrust bearing during start-up and shutdown. Lubr Sci 30(4):137–148CrossRef Wang Z, Liu Y, Wang Y, Liu X, Wang Y (2018) Influence of squeezing and interface slippage on the performance of water-lubricated tilting-pad thrust bearing during start-up and shutdown. Lubr Sci 30(4):137–148CrossRef
13.
go back to reference Kumar R, Ghosh SK, Azam MS, Khan H (2018) Numerical Simulation of rough thrust pad bearing under thin-film lubrication using variable mesh density. Iran J Sci Technol Trans Mech Eng 1–22 (2018) Kumar R, Ghosh SK, Azam MS, Khan H (2018) Numerical Simulation of rough thrust pad bearing under thin-film lubrication using variable mesh density. Iran J Sci Technol Trans Mech Eng 1–22 (2018)
14.
go back to reference Kumar R, Azam MS, Ghosh SK (2019) Influence of stochastic roughness on performance of a Rayleigh step bearing operating under Thermo-elastohydrodynamic lubrication considering shear flow factor. Tribol Int 134:264–280CrossRef Kumar R, Azam MS, Ghosh SK (2019) Influence of stochastic roughness on performance of a Rayleigh step bearing operating under Thermo-elastohydrodynamic lubrication considering shear flow factor. Tribol Int 134:264–280CrossRef
15.
go back to reference Zhu D (2007) On some aspects of numerical solutions of thin-film and mixed elastohydrodynamic lubrication. Proc Inst Mech Eng Part J: J Eng Tribol 221(5):561–579CrossRef Zhu D (2007) On some aspects of numerical solutions of thin-film and mixed elastohydrodynamic lubrication. Proc Inst Mech Eng Part J: J Eng Tribol 221(5):561–579CrossRef
Metadata
Title
Simulation-Based Analysis of Performance Parameters of Thrust Pad Bearing Under Thin Film Lubrication with Chamfered Inlet
Authors
Poonam Kumari
Mohammad Sikandar Azam
Copyright Year
2020
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-1071-7_15

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