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Static Performance of Finite Hydrodynamic Journal Bearings Lubricated by Magnetic Fluids with Couple Stresses

机译:磁流体耦合应力润滑有限流体动轴颈轴承的静态性能

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Based upon the Stokes micro-continuum theory, the problem of lubrication of finite hydrodynamic journal bearing lubricated by magnetic fluids with couple stresses is investigated. By taking into account the couple stresses due to the microstructure additives and the magnetic effects due to the magnetization of the magnetic fluid, modified Reynolds equation is obtained. The effects of couple stresses are studied by defining the couple stress parameter L that can be considered as a measure of the chain length of the additive molecule. The magnetic effects of the magnetic fluid are investigated by the magnetic coefficient γ. Using the finite-difference technique and for different values of couple stress parameter and magnetic coefficient, the Reynolds equation is solved, and pressure distributions are obtained. The bearing static characteristics namely load carrying capacity, attitude angle, friction coefficient, and side leakage flow are determined. The results indicate that the influence of couple stresses and magnetic effects on the bearing characteristics are significantly apparent. It is concluded that fluids with couple stresses are better than Newtonian fluids. The improvement of the bearing characteristics is enhanced if the magnetic effects are present.
机译:基于斯托克斯微连续谱理论,研究了磁流体耦合应力润滑有限流体动力轴颈轴承的润滑问题。通过考虑由于微结构添加剂引起的耦合应力和由于磁流体的磁化而产生的磁效应,获得了修正的雷诺方程。通过定义偶合应力参数L可以研究偶合应力的影响,该参数L可以看作是添加剂分子链长的量度。通过磁系数γ研究磁性流体的磁效应。使用有限差分技术,针对耦合应力参数和磁系数的不同值,求解了雷诺方程,并获得了压力分布。确定轴承的静态特性,即承载能力,姿态角,摩擦系数和侧面泄漏流量。结果表明,耦合应力和磁效应对轴承特性的影响是显而易见的。结论是具有偶应力的流体比牛顿流体更好。如果存在磁效应,则可以提高轴承特性。

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