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Original Articles

Hydrodynamic Lubrication and Bearing Behavior with Impulsive Loads

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Pages 505-512 | Published online: 25 Mar 2008

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Read on this site (2)

NicoletaM. Ene, Florin Dimofte & TheoG. Keith. (2008) A Dynamic Analysis of Hydrodynamic Wave Journal Bearings. Tribology Transactions 51:1, pages 82-91.
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Luis San Andres. (1997) Transient Response of Externally Pressurized Fluid Film Bearings©. Tribology Transactions 40:1, pages 147-155.
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Articles from other publishers (32)

Zijia Wang, Zhiwei Mao, Jinjie Zhang, Zhinong Jiang & Guoqing Xiong. (2023) A temporal correlation micro-visco-elastohydrodynamic lubrication model and its applications on internal combustion engine. Tribology International 178, pages 108101.
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Robin M. Robrecht & Peter F. Pelz. (2022) The Lomakin effect at laminar flow in journal bearings – Modeling and simulation. Tribology International 175, pages 107792.
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Suman K Mandal, Biplab Bhattacharjee, Nabarun Biswas, Kishan Choudhuri & Prasun Chakraborti. (2021) Application of nanofluids on various performance characteristics of hydrodynamic journal bearing—A review. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 236:3, pages 1229-1238.
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Pingwei Chen, Tong Wang, Wensheng Ma, Fangzhong Li, Tianzhou Wang & Tao Chen. (2022) Characteristic Analysis of Water Lubricated Plain Journal Bearing under Transient Load. Journal of Physics: Conference Series 2160:1, pages 012073.
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Xiao Kang, Alan Palazzolo & Wan Zhong. (2020) Auxiliary bearing squeeze film dampers for magnetic bearing supported rotors. Tribology International 146, pages 106181.
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Sina Hamzehlouia & Kamran Behdinan. (2019) Squeeze film dampers supporting high-speed rotors: Fluid inertia effects. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 234:1, pages 18-32.
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Michael Rom & Siegfried Müller. (2019) A new model for textured surface lubrication based on a modified Reynolds equation including inertia effects. Tribology International 133, pages 55-66.
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Mohammad Yaghoub Abdollahzadeh Jamalabadi. (2017) Effects of Nanoparticle Enhanced Lubricant Films in Dynamic Properties of Plain Journal Bearings at High Reynolds Numbers. International Journal of Engineering and Technologies 13, pages 1-23.
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Mohammad Yaghoub Abdollahzadeh Jamalabadi. (2017) Effects of Nanoparticle Enhanced Lubricant Films in Dynamic Properties of Plain Journal Bearings at High Reynolds Numbers. International Journal of Engineering and Technologies 13, pages 1-23.
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Sina Hamzehlouia & Kamran Behdinan. (2017) A Study of Lubricant Inertia Effects for Squeeze Film Dampers Incorporated into High-Speed Turbomachinery. Lubricants 5:4, pages 43.
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Luis San Andrés & Sung-Hwa Jeung. (2016) Response of a Squeeze Film Damper-Elastic Structure System to Multiple and Consecutive Impact Loads. Journal of Engineering for Gas Turbines and Power 138:12.
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Saeid Dousti, Paul Allaire, Timothy Dimond & Jianming Cao. (2016) An extended Reynold equation applicable to high reduced Reynolds number operation of journal bearings. Tribology International 102, pages 182-197.
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B. Remy, B. Bou-Saïd & T. Lamquin. (2016) Fluid inertia and energy dissipation in turbocharger thrust bearings. Tribology International 95, pages 139-146.
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Florence Dupuy, Benyebka Bou-Saïd & John Tichy. (2015) High-Speed Subsonic Compressible Lubrication. Journal of Tribology 137:4.
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B. Rémy, T. Lamquin & B. Bou-Saïd. 2014. 11th International Conference on Turbochargers and Turbocharging. 11th International Conference on Turbochargers and Turbocharging 449 458 .
Jonathan P. Kyle & Elon J. Terrell. (2013) Application of Smoothed Particle Hydrodynamics to Full-Film Lubrication. Journal of Tribology 135:4.
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Saeid Dousti, Jianming Cao, Amir Younan, Paul Allaire & Tim Dimond. (2012) Temporal and Convective Inertia Effects in Plain Journal Bearings With Eccentricity, Velocity and Acceleration. Journal of Tribology 134:3.
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Andras Z. Szeri. 2012. Fluid Film Lubrication. Fluid Film Lubrication 184 221 .
Cédric Leblond, Vincent Melot, Jean-François Sigrist, Christian Lainé, Bruno Auvity & Hassan Peerhossaini. (2008) Transient Fluid Forces on a Rigid Circular Cylinder Subjected to Small Amplitude Motions. Journal of Pressure Vessel Technology 130:3.
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Nicoleta M. Ene, Florin Dimofte & Theo G. KeithJr.Jr.. (2008) A stability analysis for a hydrodynamic three-wave journal bearing. Tribology International 41:5, pages 434-442.
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B. Bou-Saïd, G. Grau & I. Iordanoff. (2008) On Nonlinear Rotor Dynamic Effects of Aerodynamic Bearings With Simple Flexible Rotors. Journal of Engineering for Gas Turbines and Power 130:1.
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B. Fantino & B. Bou-Saïd. 2003. Tribological Research and Design for Engineering Systems, Proceedings of the 29th Leeds-Lyon Symposium on Tribology. Tribological Research and Design for Engineering Systems, Proceedings of the 29th Leeds-Lyon Symposium on Tribology 779 787 .
Y. HAN & R.J. ROGERS. (2001) NONLINEAR FLUID FORCES IN CYLINDRICAL SQUEEZE FILMS. PART I: SHORT AND LONG LENGTHS. Journal of Fluids and Structures 15:1, pages 151-169.
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I.Y Shen. (2000) Recent vibration issues in computer hard disk drives. Journal of Magnetism and Magnetic Materials 209:1-3, pages 6-9.
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Tan Qingchang, Li Wei & Zhang Jun. (1997) Fluid forces in short squeeze-film damper bearings. Tribology International 30:10, pages 733-738.
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Tan Qingchang, Chang Ying & Wang Lyjiang. (1997) Effect of a circumferential feeding groove on fluid force in short squeeze film dampers. Tribology International 30:6, pages 409-416.
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J. X. Zhang. (1997) Fluid Inertia Effects on the Performance of Short and Long Squeeze Film Dampers Executing Periodic Vibration. Journal of Tribology 119:2, pages 306-314.
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Yingke Han & R. J. Rogers. (1996) Squeeze Film Force Modeling for Large Amplitude Motion Using an Elliptical Velocity Profile. Journal of Tribology 118:3, pages 687-692.
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J. X. Zhang & J. B. Roberts. (1996) Solutions for the Combined Motion of Finite Length Squeeze Film Dampers Around the Bearing Center. Journal of Tribology 118:3, pages 617-622.
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J. X. Zhang & J. B. Roberts. (1996) Force Coefficients for a Centrally Grooved Short Squeeze Film Damper. Journal of Tribology 118:3, pages 608-616.
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J X Zhang. (2006) Study of Static Fluid Forces in a Squeeze Film Damper with a Circumferential Groove. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 209:4, pages 263-274.
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A. El-Shafei. (1995) Modeling Fluid Inertia Forces of Short Journal Bearings for Rotordynamic Applications. Journal of Vibration and Acoustics 117:4, pages 462-469.
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