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Original Articles

Simulation and Control of an Active Tilting-Pad Journal Bearing

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Pages 440-458 | Published online: 12 Aug 2010

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Read on this site (3)

Girish H & Raghuvir Pai. (2022) Dynamic performance and stability characteristics of a multi pad externally adjustable fluid film bearing. Australian Journal of Mechanical Engineering 0:0, pages 1-16.
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An Wu & Marcio De Queiroz. (2010) A New Active Tilting-Pad Bearing: Nonlinear Modeling and Feedback Control. Tribology Transactions 53:5, pages 755-763.
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SidneyB. Lang. (2006) Guide to the Literature of Piezoelectricity and Pyroelectricity. 25. Ferroelectrics 330:1, pages 103-182.
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Articles from other publishers (45)

Shuxia Peng, Xin Qin, Xiaojing Wang, Guangyao Huang & Xin Xiong. (2023) Experimental Study of Piezoelectric Control for Changing Tilting Pad Journal Bearing Circumferential Angle and Radial Displacement. Lubricants 11:12, pages 510.
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Leonid Savin, Denis Shutin, Yuri Kazakov, Alexey Kornaev, Roman Polyakov & Shengbo Li. 2023. Advances in Active Bearings in Rotating Machinery. Advances in Active Bearings in Rotating Machinery 12 26 .
Ganesha A, R. Pai, S. M Abdul Khader, Girish H & Nitesh Kumar. (2022) A neural network approach to establish the minimum film thickness in a multipad adjustable bearing. A neural network approach to establish the minimum film thickness in a multipad adjustable bearing.
Shengbo Li, Alexander Babin, Denis Shutin, Yuri Kazakov, Yifan Liu, Zhaobo Chen & Leonid Savin. (2022) Active hybrid journal bearings with lubrication control: Towards machine learning. Tribology International 175, pages 107805.
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Yuri N. Kazakov, Alexey V. Kornaev, Denis V. Shutin, Shengbo Li & Leonid A. Savin. (2022) Active Fluid-Film Bearing With Deep Q-Network Agent-Based Control System. Journal of Tribology 144:8.
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Alberto Betti, Paola Forte & Enrico Ciulli. (2022) Turbulence Effects in Tilting Pad Journal Bearings: A Review. Lubricants 10:8, pages 171.
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Chunwang Xu, Shujiang Chen, Changhou Lu, Kang Wang & Jiaheng Sun. (2021) Direct compensation of the spindle rotation error with an active hydrostatic journal bearing system. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 236:5, pages 2340-2351.
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H. Girish & Raghuvir Pai. (2021) Stability performance of an adjustable multi-pad fluid film bearing profile under load-between-pad orientations. International Journal of Dynamics and Control 10:1, pages 349-361.
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Edward H. Smith. (2022) Observer-Based Control of Tilting-Pad Thrust Bearings. Lubricants 10:1, pages 11.
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A Ganesha, R. Pai, S.M Abdul Khader & H Girish. (2021) Sensitivity Analysis of Minimum Film Thickness on the Controllable Bearing Adjustments of a Multi-Pad Active Fluid Film Bearing Using DOE Technique. Sensitivity Analysis of Minimum Film Thickness on the Controllable Bearing Adjustments of a Multi-Pad Active Fluid Film Bearing Using DOE Technique.
Joep Nijssen & Ron van Ostayen. (2021) Passive shape shifting: A compliant design approach for full film bearings. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 235:24, pages 8013-8024.
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Łukasz Breńkacz, Łukasz Witanowski, Marta Drosińska-Komor & Natalia Szewczuk-Krypa. (2021) Research and applications of active bearings: A state-of-the-art review. Mechanical Systems and Signal Processing 151, pages 107423.
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A Babin. (2021) Data-driven system identification and optimal control of an active rotor-bearing system. IOP Conference Series: Materials Science and Engineering 1047:1, pages 012053.
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A. S. Fetisov, A. Yu. Babin & V. O. Tyurin. 2021. Proceedings of the 6th International Conference on Industrial Engineering (ICIE 2020). Proceedings of the 6th International Conference on Industrial Engineering (ICIE 2020) 1263 1270 .
Alexander Babin, Alexey Kornaev, Alexey Rodichev & Leonid Savin. (2019) Active thrust fluid-film bearings: Theoretical and experimental studies. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 234:2, pages 261-273.
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O. Adeyemi, A. Onsy & I. Sherrington. 2020. Advances in Asset Management and Condition Monitoring. Advances in Asset Management and Condition Monitoring 1243 1250 .
Waheed Ur Rehman, Jiang Guiyun, Luo Yuan Xin, Wang Yongqin, Nadeem Iqbal, Shafiq UrRehman & Shamsa Bibi. (2019) Linear extended state observer-based control of active lubrication for active hydrostatic journal bearing by monitoring bearing clearance. Industrial Lubrication and Tribology 71:7, pages 869-884.
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Harkaitz Urreta, Gorka Aguirre, Pavel Kuzhir & Luis Norberto Lopez de Lacalle. (2019) Actively lubricated hybrid journal bearings based on magnetic fluids for high-precision spindles of machine tools. Journal of Intelligent Material Systems and Structures 30:15, pages 2257-2271.
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Alexander Babin, Alexey Rodichev & Valentin Tyurin. (2018) Numerical and Experimental Studies of Axial Stability of Rotors on Thrust Fluid-Film Bearings with Active Control. Numerical and Experimental Studies of Axial Stability of Rotors on Thrust Fluid-Film Bearings with Active Control.
Anton Valerievich Sytin & Alexey Yurievich Rodichev. (2018) Mechatronic test rig with electromagnetic loading for high-speed rotor-bearing systems research. Journal of Dynamics and Vibroacoustics 4:2, pages 12-17.
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Alejandro Cerda Varela & Ilmar Ferreira Santos. (2018) Component level study of an actively lubricated LEG Tilting Pad Bearing: Theory and experiment. Tribology International 120, pages 115-126.
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Ilmar Santos. (2018) Controllable Sliding Bearings and Controllable Lubrication Principles—An Overview. Lubricants 6:1, pages 16.
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Xiaohu Wang, Hongguang Li & Guang Meng. (2017) Rotordynamic coefficients of a controllable magnetorheological fluid lubricated floating ring bearing. Tribology International 114, pages 1-14.
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Ilmar Ferreira Santos & Peter Kjær Svendsen. (2017) Noninvasive Parameter Identification in Rotordynamics Via Fluid Film Bearings—Linking Active Lubrication and Operational Modal Analysis. Journal of Engineering for Gas Turbines and Power 139:6.
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Alejandro Cerda Varela, Asier Bengoechea García & Ilmar Ferreira Santos. (2017) Modelling of LEG tilting pad journal bearings with active lubrication. Tribology International 107, pages 250-263.
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Jorge G. Salazar & Ilmar F. Santos. (2017) Active tilting-pad journal bearings supporting flexible rotors: Part II–The model-based feedback-controlled lubrication. Tribology International 107, pages 106-115.
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A. Babin, D. Shutin & L. Savin. (2017) Modeling of Rotor P-Controlled Position on Thrust Bearing with Fixed Inclined Pads. Procedia Engineering 206, pages 505-511.
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Piotr Maria Przybylowicz, Zbigniew Starczewski & Piotr Korczak-Komorowski. (2015) Sensitivity of regions of irregular and chaotic vibrations of an asymmetric rotor supported on journal bearings to structural parameters. Acta Mechanica 227:11, pages 3101-3112.
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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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D. Shutin & R. Polyakov. (2016) Adaptive nonlinear controller of rotor position in active hybrid bearings. Adaptive nonlinear controller of rotor position in active hybrid bearings.
Leonid Savin, Sergey Mayorov, Denis Shutin & Alexander Babin. (2016) Rotor Trajectories in Fluid-Film Bearings, Adjustment of Them and Energy Efficiency Parameters. MATEC Web of Conferences 77, pages 01017.
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Duc-Do Le, Ching-Kuan Tsuei & Min-Chun Pan. (2015) Optimally controlled anti-swirl injection to eliminate whirl in fluid-film bearings of rotary machinery. International Journal of Mechanical Sciences 98, pages 157-168.
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John Ch. Dermentzoglou & John M. Prousalidis. (2015) Contribution to a detailed modeling and more reliable simulation of a ship's shaft machine. Contribution to a detailed modeling and more reliable simulation of a ship's shaft machine.
Alejandro Cerda Varela & Ilmar Ferreira Santos. (2014) Tilting-Pad Journal Bearings With Active Lubrication Applied as Calibrated Shakers: Theory and Experiment. Journal of Vibration and Acoustics 136:6.
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Denis Shutin, Leonid Savin & Alexander Babin. (2014) A Review on Active Bearings and Perspectives of Using Them in Rotating Machinery. Applied Mechanics and Materials 630, pages 181-187.
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Marcio de Queiroz. (2012) An active hydrodynamic bearing for controlling self-excited vibrations: theory and simulation. Journal of Vibration and Control 19:14, pages 2211-2222.
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Chen-Chao Fan, Jhe-Wei Syu, Min-Chun Pan & Wen-Chang Tsao. (2011) Study of start-up vibration response for oil whirl, oil whip and dry whip. Mechanical Systems and Signal Processing 25:8, pages 3102-3115.
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Chen-Chao Fan & Min-Chun Pan. (2011) Experimental study on the whip elimination of rotor-bearing systems with electromagnetic exciters. Mechanism and Machine Theory 46:3, pages 290-304.
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Chen-Chao Fan & Min-Chun Pan. (2011) Active elimination of oil and dry whips in a rotating machine with an electromagnetic actuator. International Journal of Mechanical Sciences 53:2, pages 126-134.
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Zhiyong Yan, Yi Lu & Tiesheng Zheng. (2011) An Analytical Complete Model of Tilting-Pad Journal Bearing Considering Pivot Stiffness and Damping. Journal of Tribology 133:1.
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Ilmar Ferreira Santos. (2011) On the future of controllable fluid film bearings. Mécanique & Industries.
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Asger M. Haugaard & Ilmar F. Santos. (2010) Multi-orifice active tilting-pad journal bearings—Harnessing of synergetic coupling effects. Tribology International 43:8, pages 1374-1391.
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Chen-Chao Fan & Min-Chun Pan. (2010) Fluid-induced instability elimination of rotor-bearing system with an electromagnetic exciter. International Journal of Mechanical Sciences 52:4, pages 581-589.
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M.S. De Queiroz. (2009) An Active Identification Method of Rotor Unbalance Parameters. Journal of Vibration and Control 15:9, pages 1365-1374.
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A. Wu, Z. Cai & M. S. de Queiroz. (2007) Model-Based Control of Active Tilting-Pad Bearings. IEEE/ASME Transactions on Mechatronics 12:6, pages 689-695.
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