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EFFECTS OF ELECTROKINETIC SLIP FLOW ON LUBRICATION THEORY

机译:电动滑动流对润滑理论的影响

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A lubrication theory that includes the effects of electric double layer (EDL) and boundary slip is developed. Both effects are important in microflow, and thus in lubrication problems. They have opposite effects on velocity distributions between lubricating surfaces. Also, the velocity distribution induced by the EDL stream potential (electro-viscous effect) is affected by the boundary slip. Under the usual assumptions of lubrication and Debye-Huckel approximation for low surface potential, the Navier-Stokes equation with body force due to the electrical potential as well as the widely accepted Navier slip boundary conditions is utilized on deriving the modified Reynolds equation. Effects of EDL and boundary slip on the 1 -D bearing performance are discussed by solving the modified Reynolds equation numerically.
机译:一种包括电双层(EDL)和边界滑动的效果的润滑理论。两种效果在微射线中都很重要,从而在润滑问题中。它们对润滑表面之间的速度分布相反。而且,由EDL流电位(电粘效应)引起的速度分布受边界滑动的影响。在润滑的通常假设和Debye-Huckel近似值的低表面电位的情况下,利用由于电势而导致的身体力以及广泛接受的Navier Slow边界条件的Navier-Stokes方程在导出改进的雷诺方程上。通过在数值上求解改性的雷诺式方程,讨论了EDL和边界滑动对1 -D轴承性能的影响。

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