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Influence of MHD Lubrication and Textured Surface in EHL Line Contact

TLDR
In this paper, the combined effect of micro-texture and magneto hydrodynamic lubrication behavior on the performance of EHL line contact was investigated using FEA and Generalized Minimal residual method (GMRES).
Abstract
The present numerical study investigates the combined effect of micro-texture and magneto hydrodynamic lubrication behaviour on the performance of EHL line contact. Micro-textures are provided in the inlet zone of contacting surface has been studied. Modified Reynolds equation, elasticity equation and load balance equation has been solved using FEA and Generalized Minimal Residual Method (GMRES). A parametric study has been performed to optimize the micro-texture shapes in the contacting surfaces for different values of magneto hydrodynamic lubricant parameters The numerical results show that increasing externally applied magnetic field and micro- texture shapes enhances the values of performance parameter of EHL line contact. Finally, the variation in the steady-state EHL characteristics pertaining to unidirectional pure sliding contacts due to an artificially produced IZMTS is investigated numerically. The enhancement in central and minimum film thickness is found to be upto 38% and 28% respectively along with 33.28% reduction in coefficient of friction.

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Journal ArticleDOI

Parametric investigation of surface texturing on performance characteristics of water lubricated journal bearing using FSI approach

TL;DR: In this paper, a parametric analysis of various operating and surface texturing parameters on the performance characteristics of water lubricated journal bearing was carried out using Fluid Structure Interaction approach.
Journal ArticleDOI

Lubrication state identification of the line contact tribo-pair under a pure rolling condition with ultrasonic method:

TL;DR: A line contact tribo-pair is a key mechanism unit in rolling bearings as discussed by the authors, which is often characterized by ultra-high contact pressure and ultra-thin oil film, and elastohydrodynamic lubrication is often a
Journal ArticleDOI

Prediction of Contact and Lubrication Characteristics of Micro-textured Surface Under Thermal Line Contact EHL

TL;DR: In this article, a method combining numerical surface generation technology and three-dimensional hot-line contact EHL is employed to evaluate the contact characteristics of micro-textured surfaces under high-load line contact.
References
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Journal ArticleDOI

State of the art in Laser Surface Texturing

TL;DR: In this paper, the authors present the state of the art in LST and the potential of this technology in various lubricated applications like mechanical seals, piston rings and thrust bearings.
Proceedings ArticleDOI

State of the Art in Laser Surface Texturing

TL;DR: Laser Surface Texturing (LST) is probably the most advanced surface texturing technique as mentioned in this paper and it produces a very large number of micro-dimples on the surface and each of these microdimples can serve either as a micro-hydrodynamic bearing in cases of full or mixed lubrication.
Journal ArticleDOI

Influence of surface texture on boundary lubricated sliding contacts

TL;DR: The friction and wear behavior of boundary lubricated sliding surfaces is influenced by the surface texture as mentioned in this paper, by introducing controlled depressions and undulations in an otherwise flat surface, the...
Journal ArticleDOI

A Numerical Solution to the Elasto-Hydrodynamic Problem

TL;DR: In this article, a solution to the problem of hydrodynamic lubrication of highly loaded clastic cylinders under isothermal conditions is presented. And a numerical method is developed which enables a pressure cu...
Journal ArticleDOI

Experimental Investigation of Laser Surface Textured Parallel Thrust Bearings

TL;DR: In this article, the performance of unidirectional and bi-directional partial-LST bearing with a baseline, untextured bearing is compared with that of a baseline bearing in terms of increased clearance and reduced friction.
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