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Original Articles

The Effect of Different Lubrication Methods on the Performance of a Tilting-Pad Journal Bearing

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Pages 529-536 | Published online: 25 Mar 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

BrianK. Weaver, AmirA. Younan, TimothyW. Dimond, Zhuosong Wang, Paul Allaire & AndresF. Clarens. (2013) Properties and Performance of Gas-Expanded Lubricants in Tilting Pad Journal Bearings. Tribology Transactions 56:4, pages 687-696.
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W.M. Dmochowski$suffix/text()$suffix/text() & B. Blair. (2006) Effect of Oil Evacuation on the Static and Dynamic Properties of Tilting Pad Journal Bearings. Tribology Transactions 49:4, pages 536-544.
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KeithB. Brockwell, Scan Decamillo & Waldemar Dmochowski. (2001) Measured Temperature Characteristics of 152 mm Diameter Pivoted Shoe Journal Bearings with Flooded Lubrication. Tribology Transactions 44:4, pages 543-550.
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Articles from other publishers (19)

Michael Stottrop, Nico Buchhorn & Beate Bender. (2022) Experimental Investigation of a Large Tilting-Pad Journal Bearing—Comparison of a Flooded and Non-Flooded Design. Lubricants 10:5, pages 83.
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Thomas Hagemann, Philipp Zemella, Bastian Pfau & Hubert Schwarze. (2020) Experimental and theoretical investigations on transition of lubrication conditions for a five-pad tilting-pad journal bearing with eccentric pivot up to highest surface speeds. Tribology International 142, pages 106008.
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Mingyang Lou, Olivier Bareille, Wei Chen & Xing Xu. (2019) Experimental and numerical investigation on the performance of fluid pivot journal bearing in one-sided floating state. Tribology International 138, pages 353-364.
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Thomas Hagemann & Hubert Schwarze. (2019) Theoretical and Experimental Analyses of Directly Lubricated Tilting-Pad Journal Bearings With Leading Edge Groove. Journal of Engineering for Gas Turbines and Power 141:5.
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Thomas Hagemann & Hubert Schwarze. (2019) A Model for Oil Flow and Fluid Temperature Inlet Mixing in Hydrodynamic Journal Bearings. Journal of Tribology 141:2.
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Bradley R. NicholsRoger L. Fittro & Christopher P. Goyne. (2018) Steady-State Tilting-Pad Bearing Performance Under Reduced Oil Supply Flow Rates. Journal of Tribology 140:5.
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David M. Coghlan & Dara W. Childs. (2017) Characteristics of a Spherical-Seat TPJB With Four Methods of Directed Lubrication—Part I: Thermal and Static Performance. Journal of Engineering for Gas Turbines and Power 139:12.
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Brian K. Weaver, Jason A. Kaplan, Andres F. Clarens & Alexandrina Untaroiu. (2016) Transient Analysis of Gas-Expanded Lubrication and Rotordynamic Performance in a Centrifugal Compressor. Journal of Engineering for Gas Turbines and Power 138:4.
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Fan Zhang, Wu Ouyang, Honglun Hong, Yongsheng Guan, Xiaoyang Yuan & Guangneng Dong. (2015) Experimental study on pad temperature and film thickness of tilting-pad journal bearings with an elastic-pivot pad. Tribology International 88, pages 228-235.
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Brian K. Weaver, Timothy W. Dimond, Jason A. Kaplan, Alexandrina Untaroiu & Andres F. Clarens. (2015) Gas-Expanded Lubricant Performance and Effects on Rotor Stability in Turbomachinery. Journal of Engineering for Gas Turbines and Power 137:7.
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Hyeonmin Jo, Chaesil Kim & Sooyong Cho. (2011) A Systematic Design of Tilting Pad Journal Bearing for a 1.2MW Turboblower. Applied Mechanics and Materials 110-116, pages 2268-2276.
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Andres Clarens, Amir Younan, Shibo Wang & Paul Allaire. (2010) Feasibility of Gas-Expanded Lubricants for Increased Energy Efficiency in Tilting-Pad Journal Bearings. Journal of Tribology 132:3.
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Seongheon Yang, Chaesil Kim & Wonchang Lee. (2009) Prevention of fluttering fatigue damage in a tilting pad journal bearing. Tribology International 42:6, pages 816-822.
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Seong Heon Yang, Chaesil Kim & Yong-Bok Lee. (2006) Experimental study on the characteristics of pad fluttering in a tilting pad journal bearing. Tribology International 39:7, pages 686-694.
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. (2005) Development of Anti-fluttering Tilting Pad Journal Bearing with the Shape Modification of Upper Pad. Journal of Fluid Machinery 8:5, pages 35-45.
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M Tanaka. (2005) Recent thermohydrodynamic analyses and designs of thick-film bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 214:1, pages 107-122.
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S. Taniguchi, T. Makino, Y. Ozawa & T. Ichimura. (1998) A Thermohydrodynamic Lubrication Analysis to Design Large Two-Pad Journal Bearing With Cooling Ditches. Journal of Tribology 120:2, pages 214-220.
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C. Bouchoule, M. Fillon, D. Nicolas & F. Barresi. (1996) Experimental Study of Thermal Effects in Tilting-Pad Journal Bearings at High Operating Speeds. Journal of Tribology 118:3, pages 532-538.
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M Z Khan & T A Stolarski. (2006) Dynamic Performance of Oil-Lubricated Helical Groove Journal Bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 208:1, pages 65-73.
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