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Original Articles

Stochastic FEM Analysis of Finite Hydrodynamic Bearings with Rough Surfaces

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Pages 605-612 | Published online: 25 Mar 2008

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Ram Turaga, A.S. Sekhar & B.C. Majumdar. (2000) Non-Linear Transient Stability Analysis of a Rigid Rotor Supported on Hydrodynamic Journal Bearings with Rough Surfaces. Tribology Transactions 43:3, pages 447-452.
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Articles from other publishers (8)

Jimit R. Patel, Nitin D. Patel & G.M. Deheri. (2022) Influence of slip and roughness on a ferrofluid squeeze-film between a sphere and flat porous plate. Materials Today: Proceedings 50, pages 1308-1314.
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Jimit R. Patel & G. M. Deheri. (2017) A Comparison of Magnetic Fluid Flow Models on the Behavior of a Ferrofluid Squeeze Film in Curved Rough Porous Circular Plates Considering Slip Velocity. Iranian Journal of Science and Technology, Transactions A: Science 42:4, pages 2053-2061.
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K. Maharshi, T. Mukhopadhyay, B. Roy, L. Roy & S. Dey. (2018) Stochastic dynamic behaviour of hydrodynamic journal bearings including the effect of surface roughness. International Journal of Mechanical Sciences 142-143, pages 370-383.
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Tom Gustafsson, Harri Hakula & Matti Leinonen. (2017) Stochastic Galerkin approximation of the Reynolds equation with irregular film thickness. Computers & Mathematics with Applications 74:7, pages 1590-1606.
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Y Tarasevych, I Savchenko & N Sovenko. (2017) Influence of technological deviations on the basic operational characteristics of hydrodynamic bearings. IOP Conference Series: Materials Science and Engineering 233, pages 012047.
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Jimit R. Patel & G. M. Deheri. (2016) Performance of a Ferrofluid Based Rough Parallel Plate Slider Bearing: A Comparison of Three Magnetic Fluid Flow Models. Advances in Tribology 2016, pages 1-9.
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T. Nagaraju, Satish C. Sharma & S.C. Jain. (2002) Influence of surface roughness effects on the performance of non-recessed hybrid journal bearings. Tribology International 35:7, pages 467-487.
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R Turaga, A. S. Sekhar & B. C. Majumdar. (2005) Stability analysis of a rigid rotor supported on hydrodynamic journal bearings with rough surfaces using the stochastic finite element method. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 212:2, pages 121-130.
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