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Performance of a Magnetic Fluid-Based Squeeze Film Between Infinitely Long Rough Porous Rectangular Plates

机译:无限长的粗糙多孔矩形板之间的磁流体挤出膜的性能

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An attempt has been made to discuss the performance of a magnetic fluid based squeeze film between porous infinitely long transversely rough rectangular plates. A magnetic fluid is used as a lubricant and the external magnetic field is oblique to the lower plate. The roughness of the bearing surfaces is characterized by a stochastic random variable with non-zero mean, variance and skewness. The associated Reynolds' equation is solved with suitable boundary conditions to obtain the pressure distribution in turn, which is used to get the expression for load carrying capacity resulting in the calculation of response time. The graphical representation tends to suggest that the bearing system registers an enhanced performance as compared to that of a bearing system dealing with a conventional lubricant. In fact, the pressure, load carrying capacity and response time increase with increasing magnetization parameter. It is noticed that the bearing suffers in general due to transverse roughness. However, the present study reveals that the negatively skewed roughness improves the performance of the bearing system. In addition, it is observed that the aspect ratio significantly affects the performance of the bearing system. Besides, the present study indicates that although the combined negative influence of the porosity, standard deviation and the aspect ratio dominates the positive effect of the magnetization parameter, there exists some scopes for improving the performance of the bearing system by choosing a suitable combination of the magnetization parameter and the aspect ratio in the case of negatively skewed roughness because even the load carrying capacity increases due to negative variance. This article reveals that the roughness must be given due consideration while designing the bearing system even though there is the presence of a strong magnetic field.
机译:已经尝试讨论多孔无限长的横向粗糙矩形板之间的磁性流体基挤出膜的性能。磁性流体用作润滑剂,外部磁场倾斜于下板。轴承表面的粗糙度的特征在于具有非零平均值,方差和偏斜的随机随机变量。相关的雷诺等方程用合适的边界条件求解,以便依次获得压力分布,其用于获得负载承载能力的表达,从而导致响应时间的计算。图形表示倾向于表明轴承系统与与传统润滑剂的轴承系统相比寄存增强的性能。实际上,随着磁化参数的增加,压力,负载承载能力和响应时间增加。注意到,由于横向粗糙度,轴承一般遭受。然而,本研究表明,负倾斜的粗糙度提高了轴承系统的性能。另外,观察到纵横比显着影响轴承系统的性能。此外,本研究表明,虽然孔隙率,标准偏差和纵横比的组合负影响主导了磁化参数的正效应,但是通过选择合适的组合,存在一些用于提高轴承系统的性能的范围。磁化参数和纵横比在负偏斜粗糙度的情况下,因为即使负载承载能力也因负方差而增加。本文揭示了必须在设计轴承系统的同时应得的粗糙度,即使存在强磁场。

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