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Original Articles

Electrorheological Fluid-Controlled “Smart” Journal Bearings

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Pages 611-618 | Published online: 25 Mar 2008

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Si Young Jung & Seung-Bok Choi. (1995) Analysis of a Short Squeeze-Film Damper Operating with Electrorheological Fluids. Tribology Transactions 38:4, pages 857-862.
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Articles from other publishers (28)

Atul Kumar Singh, Vivek Kumar, Simran Jeet Singh & Satish C Sharma. (2022) Performance of hybrid thrust bearing textured surface operating with electro-rheological lubricant. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 237:4, pages 911-925.
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Thomas G. Chondros & Sofia D. Panteliou. 2023. Distinguished Figures in Mechanism and Machine Science. Distinguished Figures in Mechanism and Machine Science 1 47 .
Sunil Kumar, Vijay Kumar & Anoop Kumar Singh. Dynamic performance analysis of ER fluid lubricated journal bearing. Dynamic performance analysis of ER fluid lubricated journal bearing.
Sunil Kumar, Vijay Kumar, Anoop Kumar Singh & Anita Gehlot. (2022) On the static performance characteristics of ER fluid lubricated asymmetric journal bearing. Materials Today: Proceedings 69, pages 297-302.
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Ajit BeheraAjit Behera. 2022. Advanced Materials. Advanced Materials 193 223 .
Huan He, Xing Tan, Jincheng He, Fang Zhang & Guoping Chen. (2020) A novel ring-shaped vibration damper based on piezoelectric shunt damping: Theoretical analysis and experiments. Journal of Sound and Vibration 468, pages 115125.
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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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Mohammed AL Rkabi, Hamid Moeenfard & Jalil Rezaeepazhand. (2019) Vibration attenuation of rotor-bearing systems using smart electro-rheological elastomer supports. Journal of the Brazilian Society of Mechanical Sciences and Engineering 41:6.
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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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A. Walicka & J. Falicki. (2017) Reynolds Number Effects in the Flow of a Vočadlo Electrorheological Fluid in a Curved Gap. International Journal of Applied Mechanics and Engineering 22:3, pages 675-695.
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Yong-Bok Lee. (2015) Behavior Analysis of Controllable Electrorheology Fluid Plain Journal Bearings. Journal of Dynamic Systems, Measurement, and Control 137:6.
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A. Walicka & J. Falicki. (2015) Reynolds number effects in the flow of an electrorheological fluid of a Casson type between fixed surfaces of revolution. Applied Mathematics and Computation 250, pages 636-649.
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A. Walicka & J. Falicki. (2013) Inertia Effects in the Flow of a Herschel-Bulkley ERF between Fixed Surfaces of Revolution. Smart Materials Research 2013, pages 1-10.
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Dimitrios A. Bompos & Pantelis G. Nikolakopoulos. (2011) CFD simulation of magnetorheological fluid journal bearings. Simulation Modelling Practice and Theory 19:4, pages 1035-1060.
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J. Sharana Basavaraja, Satish C. Sharma & Satish C. Jain. (2010) A study of misaligned electrorheological fluid lubricated hole-entry hybrid journal bearing. Tribology International 43:5-6, pages 1059-1064.
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Jalil RezaeepazhandLotfollah Pahlavan. (2008) Transient Response of Sandwich Beams with Electrorheological Core. Journal of Intelligent Material Systems and Structures 20:2, pages 171-179.
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Jie Peng & Ke-Qin Zhu. (2006) Effects of electric field on hydrodynamic characteristics of finite-length ER journal bearings. Tribology International 39:6, pages 533-540.
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Jie PengKe-Qin Zhu. (2016) Hydrodynamic Characteristics of ER Journal Bearings with External Electric Field Imposed on the Contractive Part. Journal of Intelligent Material Systems and Structures 16:6, pages 493-499.
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Changsheng Zhu. (2005) A disk-type magneto-rheological fluid damper for rotor system vibration control. Journal of Sound and Vibration 283:3-5, pages 1051-1069.
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G. C. Barber, Q. Y. Jiang, Q. Zou & W. Carlson. (2005) Development of a laboratory test device for electrorheological fluids in hydrostatic lubrication. Tribotest 11:3, pages 185-191.
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J. Y. Jang & M. M. Khonsari. (2001) On the thermohydrodynamic analysis of a Bingham fluid in slider bearings. Acta Mechanica 148:1-4, pages 165-185.
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Yao Guozhi, Yap Fook Fah, Chen Guang, Meng Guang, Fang Tong & Qiu Yang. (2000) Electro-Rheological Multi-layer Squeeze Film Damper and Its Application to Vibration Control of Rotor System. Journal of Vibration and Acoustics 122:1, pages 7-11.
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James G. Kohl, John A. Tichy, Kevin C. Craig & Skye M. Malcolm. (2006) Determination of the Bingham parameters of an electrorheological fluid in an axial flow concentric‐cylinder rheometer. Tribotest 5:3, pages 211-224.
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A. Korenaga, T. Yoshioka, H. Mizutani & K. Kikuchi. 1999. Lubrication at the Frontier - The Role of the Interface and Surface Layers in the Thin Film and Boundary Regime, Proceedings of the 25th Leeds-Lyon Symposium on Tribology. Lubrication at the Frontier - The Role of the Interface and Surface Layers in the Thin Film and Boundary Regime, Proceedings of the 25th Leeds-Lyon Symposium on Tribology 517 522 .
Edward Walicki & Anna Walicka. (2016) Reynolds Number Effects in the Flow of an Electrorheological Fluid between Fixed Surfaces of Revolution. Journal of Intelligent Material Systems and Structures 9:8, pages 662-666.
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P. G. Nikolakopoulos & C.A. Papadopoulos. (1998) Controllable high speed journal bearings, lubricated with electro-rheological fluids. An analytical and experimental approach. Tribology International 31:5, pages 225-234.
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P. G. Nikolakopoulos & C. A. Papadopoulos. (2016) Controllable Misaligned Journal Bearings, Lubricated with Smart Fluids. Journal of Intelligent Material Systems and Structures 8:2, pages 125-137.
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C.W. Wu & H.X. Sun. (1995) A new hydrodynamic lubrication theory for bilinear rheological fluids. Journal of Non-Newtonian Fluid Mechanics 56:3, pages 253-266.
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