Effect of concentration dependence of viscosity on squeeze film lubrication.

The influence of concentration of solute particles on squeeze film lubrication between two poroelastic surfaces has been analyzed using a mathematical model. Newtonian viscous fluid is considered as a lubricant whose viscosity varies linearly with concentration of suspended solute particles. Convect...

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Published in:Zeitschrift für Naturforschung Section A: A Journal of Physical Sciences Vol. 75; no. 6; pp. 533 - 543
Main Authors: Muthu, Poosan, Pujitha, Vanacharla
Format: Article
Published: De Gruyter Jun2020
Online Access:View this record in EBSCOhost
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        10.1515/zna-2019-0370
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        atl: Effect of concentration dependence of viscosity on squeeze film lubrication.
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        au:
          Muthu, Poosan
          Pujitha, Vanacharla
        affil: Department of Mathematics, National Institute of Technology, Warangal,, 506004, Telangana, India
      sug:
      keyword:
        convection-diffusion model
        poroelastic surface
        squeeze film lubrication
        variation of viscosity with concentration
      ab: The influence of concentration of solute particles on squeeze film lubrication between two poroelastic surfaces has been analyzed using a mathematical model. Newtonian viscous fluid is considered as a lubricant whose viscosity varies linearly with concentration of suspended solute particles. Convection-diffusion model is proposed to study the concentration of solute particles and is solved using finite difference method of Crank–Nicolson scheme. An iterative procedure is used to get the solution for concentration, pressure and velocity components in film region. It has been observed that load carrying capacity decreases as the concentration of solute particles in the fluid film decreases. Further, the concentration of suspended solute particles decreases as the permeability of the poroelastic plate increases and these results may be useful in understanding the mechanism of human joint.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: German
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