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Original Articles

Sliding Bearing Lubricated with Ferromagnetic Fluid

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Pages 461-466 | Published online: 25 Mar 2008

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WEI HUANG, CONG SHEN & XIAOLEI WANG. (2009) Study on Static Supporting Capacity and Tribological Performance of Ferrofluids. Tribology Transactions 52:5, pages 717-723.
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Articles from other publishers (16)

A. D. Rahmatabadi, R. Rashidi Meybodi, M. Zare Mehrjardi & F. Ghayoumizade. (2022) Investigating the steady state characteristics of noncircular journal bearings lubricated with ferrofluid under concentric finite wire magnetic field. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 236:11, pages 2146-2161.
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Abhishek Kumar & Satish C. Sharma. (2022) Ferrofluid Lubrication of Optimized Spiral-Grooved Conical Hybrid Journal Bearing Using Current-Carrying Wire Model. Journal of Tribology 144:4.
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Madhusree Kole & Sameer Khandekar. (2021) Engineering applications of ferrofluids: A review. Journal of Magnetism and Magnetic Materials 537, pages 168222.
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Nimeshchandra S. Patel, G. M. Deheri, H. C. Patel, K. R. Shah & Atindra Shukla. (2020) Experimental Tribometric Characteristics Analysis of a Ferrofluid Based Journal Bearing System. Tribology Online 15:4, pages 209-221.
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Arukali Sammaiah, Wei Huang & Xiaolei Wang. (2018) Synthesis of magnetic Fe 3 O 4 /graphene oxide nanocomposites and their tribological properties under magnetic field . Materials Research Express 5:10, pages 105006.
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Stefanie M. Cattes, Keith E. Gubbins & Martin Schoen. (2016) Mean-field density functional theory of a nanoconfined classical, three-dimensional Heisenberg fluid. I. The role of molecular anchoring. The Journal of Chemical Physics 144:19.
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P. P. Kuzhir, P. G. Kuzhir, G. I. Gul’kov & A. L. Rudenya. (2011) Determination of the free boundary of the lubricant layer of a ferrofluid bearing. Journal of Engineering Physics and Thermophysics 84:2, pages 422-429.
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R. Ravaud, G. Lemarquand & V. Lemarquand. (2010) Mechanical properties of ferrofluid applications: Centering effect and capacity of a seal. Tribology International 43:1-2, pages 76-82.
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R. Ravaud, G. Lemarquand & V. Lemarquand. (2009) Magnetic pressure and shape of ferrofluid seals in cylindrical structures. Journal of Applied Physics 106:3.
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P. Kuzhir. (2008) Free boundary of lubricant film in ferrofluid journal bearings. Tribology International 41:4, pages 256-268.
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G. S. Nada & T. A. Osman. (2007) Static Performance of Finite Hydrodynamic Journal Bearings Lubricated by Magnetic Fluids with Couple Stresses. Tribology Letters 27:3, pages 261-268.
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T.A. Osman, G.S. Nada & Z.S. Safar. (2001) Static and dynamic characteristics of magnetized journal bearings lubricated with ferrofluid. Tribology International 34:6, pages 369-380.
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M. Säynätjoki & K. Holmberg. (2006) Magnetic fluids in sealing and lubrication – a state of the art review. Journal of Synthetic Lubrication 10:2, pages 119-132.
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P. Sinha, P. Chandra & D. Kumar. (1993) Ferrofluid lubrication of cylindrical rollers with cavitation. Acta Mechanica 98:1-4, pages 27-38.
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Asoke K. Deysarkar & Bert H. Clampitt. (2006) Evaluation of ferrofluids as lubricants. Journal of Synthetic Lubrication 5:2, pages 105-114.
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H.S. Chang, C.Q. Chi & P.Z. Zhao. (1987) A theoretical and experimental study of ferrofluid lubricated four-pocket journal bearings. Journal of Magnetism and Magnetic Materials 65:2-3, pages 372-374.
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