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首页> 外文期刊>Royal Society Open Science >Ferrofluid lubrication of circular squeeze film bearings controlled by variable magnetic field with rotations of the discs, porosity and slip velocity
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Ferrofluid lubrication of circular squeeze film bearings controlled by variable magnetic field with rotations of the discs, porosity and slip velocity

机译:通过可变磁场控制的圆形挤压膜轴承的圆形挤压膜,孔隙,孔隙率和滑移速度

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摘要

Based on the Shliomis ferrofluid flow model (SFFM) and continuity equation for the film as well as porous region, modified Reynolds equation for lubrication of circular squeeze film bearings is derived by considering the effects of oblique radially variable magnetic field (VMF), slip velocity at the film–porous interface and rotations of both the discs. The squeeze film bearings are made up of circular porous upper disc of different shapes (exponential, secant, mirror image of secant and parallel) and circular impermeable flat lower disc. The validity of Darcy's Law is assumed in the porous region. The SFFM is important because it includes the effects of rotations of the carrier liquid as well as magnetic particles. The VMF is used because of its advantage of generating maximum field at the required active contact area of the bearing design system. Also, the effect of porosity is included because of its advantageous property of self-lubrication. Using Reynolds equation, general form of pressure equation is derived and expression for dimensionless load-carrying capacity is obtained. Using this expression, results for different bearing design systems (due to different shapes of the upper disc) are computed and compared for variation of different parameters.
机译:基于Shliomis铁磁流体模型(SFFM)和薄膜的连续性方程以及多孔区域,通过考虑倾斜径向可变磁场(VMF),滑速的效果来得出用于润滑圆形挤出膜轴承的改进的雷诺方程。在薄膜多孔界面和两个盘的旋转。挤压膜轴承由不同形状的圆形多孔上盘组成(剪切,剪辑,透明的镜像和平行的镜像)和圆形不可渗透的扁平下盘。在多孔地区假设达西法律的有效性。 SFFM非常重要,因为它包括载体液体的旋转和磁性颗粒的影响。由于其优点是在轴承设计系统的所需主动接触面积处产生最大场的优点。而且,由于其自​​润滑性的有利性,包括孔隙率的影响。使用雷诺方程,得出的一般形式的压力方程,并获得无量纲承载能力的表达。使用该表达式,计算和比较不同轴承设计系统的结果(由于上盘的不同形状),并比较了不同参数的变化。

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