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Original Articles

The Performance of Hybrid Journal Bearings in the Superlaminar Flow Regimes

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Pages 627-634 | Published online: 25 Mar 2008

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SatishC. Sharma, S.C. Jain & N. Madhu Mohan Reddy. (2001) A Study of Non-Recessed Hybrid Flexible Journal Bearing With Different Restrictors. Tribology Transactions 44:2, pages 310-317.
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Articles from other publishers (17)

Krishnkant Sahu, Satish C. Sharma & Nathi Ram. (2022) Misalignment and Surface Irregularities Effect in MR Fluid Journal Bearing. International Journal of Mechanical Sciences 221, pages 107196.
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Satish C Sharma & Krishnkant Sahu. (2021) On the behavior of a ferrofluid-lubricated herringbone-grooved hybrid slot-entry bearing. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 235:11, pages 2295-2315.
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Krishnkant Sahu & Satish C Sharma. (2019) Influence of bearing surface irregularities on hybrid slot-entry journal bearing with electrically conducting lubricant. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 234:8, pages 1185-1207.
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Aoshuang Ding, Xiaodong Ren, Xuesong Li & Chunwei Gu. (2019) Numerical investigation of static characteristic of a tilting-pad journal bearing using shear stress transport model and air backflow. Advances in Mechanical Engineering 11:4, pages 168781401984181.
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Krishnkant Sahu & Satish C. Sharma. (2018) A study on performance of slot entry hybrid journal bearing considering effect of surface irregularities. Industrial Lubrication and Tribology 70:6, pages 1094-1109.
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Jian Li, Haiyin Cao, Lei Lv, Hong Yang & Lianxin Zhang. (2017) Influence of dissimilar radial clearances on the performance of hydrodynamic rotor-bearing systems considering misalignment effects. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 232:3, pages 231-243.
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Aoshuang Ding, Xiaodong Ren, Xuesong Li & Chunwei Gu. (2018) Numerical Investigation of Turbulence Models for a Superlaminar Journal Bearing. Advances in Tribology 2018, pages 1-14.
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Prashant B. Kushare & Satish C. Sharma. (2015) Influence of wear on the performance of 2-lobe slot entry hybrid journal bearings. Mechanics & Industry 16:5, pages 502.
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Lin Wang, Shiyuan Pei, Xianzhi Xiong & Hua Xu. (2013) Investigation of the combined influence of turbulence and thermal effects on the performance of water-lubricated hybrid bearings with circumferential grooves and stepped recesses. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 228:1, pages 53-68.
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Vijay Kumar Dwivedi, Satish Chand & K.N. Pandey. (2013) Effect of Different Flow Regime on the Static and Dynamic Performance Parameter of Hydrodynamic Bearing. Procedia Engineering 51, pages 520-528.
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Vijay Kumar Jadon & Madhvender Singh. (2007) Study of supply cut‐off and bearing geometric parameters on design of hybrid journal bearing. Industrial Lubrication and Tribology 59:2, pages 92-102.
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H.C. Garg, H.B. Sharda & V. Kumar. (2005) On the design and development of hybrid journal bearings: a review. Tribotest 12:1, pages 1-19.
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Satish C. Sharma, Vijay Kumar, S.C. Jain & T. Nagaraju. (2003) Study of hole-entry hybrid journal bearing system considering combined influence of thermal and elastic effects. Tribology International 36:12, pages 903-920.
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Satish C. Sharma, S.C. Jain & P.L. Sah. (2000) Effect of non-Newtonian behaviour of lubricant and bearing flexibility on the performance of slot-entry journal bearing. Tribology International 33:7, pages 507-517.
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Satish C Sharma, S.C Jain & N.Madhu Mohan Reddy. (1999) Influence of elastic effects on the performance of slot-entry journal bearings. Tribology International 32:10, pages 537-551.
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Satish C Sharma, Vijay Kumar, S.C Jain, R Sinhasan & M Subramanian. (1999) A study of slot-entry hydrostatic/hybrid journal bearing using the finite element method. Tribology International 32:4, pages 185-196.
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Prasad D. Kulkarni & Vikas M. Phalle. (2018) Influence of Turbulent Flow on Performance of Fluid Film Journal Bearing – Overview. SSRN Electronic Journal.
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