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Longitudinal roughness effect on magnetic fluid-based squeeze film between conical plates

机译:纵向粗糙度对锥形板之间基于磁性流体的挤压膜的影响

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Purpose - The paper aims to improve upon the performance of a squeeze film formed by a magnetic fluid between longitudinally rough conical plates. Design/methodology/approach - The objectives are achieved by mathematically modeling a magnetic fluid-based squeeze film between longitudinally rough conical plates. The roughness of the bearing surface is modeled by a stochastic random variable with non-zero mean, variance and skewness. The standard approach is to solve associated Reynold's equation which is stochastically averaged with respect to the random roughness parameter. The scope of this paper is the industrial applications with regard to enhanced performance of the bearing system. Findings - The findings indicate that the performance of the bearing gets enhanced due to negatively skewed roughness. It is also noticed that the standard deviation increases the load carrying capacity which is unlike the case of transverse surface roughness. Further, this paper suggests that there exist considerable scopes for enhancing the performance of the longitudinally rough bearing system by choosing a suitable combination of the magnetization parameter and the semi-vertical angle of the cone. Practical implications - From the industry point of view, this investigation will be certainly useful for improving the performance of a magnetic fluidbased squeeze film between longitudinally rough conical plates. Originality/value - The paper presents the improved performance of a squeeze film formed by a magnetic fluid between longitudinally rough conical plates and thereby extending the life period of the bearing system.
机译:目的-本文旨在改善由纵向粗糙的锥形板之间的磁性流体形成的挤压膜的性能。设计/方法/方法-通过对纵向粗糙的锥形板之间的基于磁性流体的挤压膜进行数学建模来实现目标。轴承表面的粗糙度由具有非零均值,方差和偏度的随机随机变量建模。标准方法是求解相关的雷诺方程,该方程是相对于随机粗糙度参数随机平均的。本文的范围是有关轴承系统性能增强的工业应用。结果-结果表明,由于负偏度粗糙,轴承的性能得到了提高。还注意到,标准偏差增加了承载能力,这与横向表面粗糙度的情况不同。此外,本文提出,通过选择磁化参数和圆锥体的半垂直角的适当组合,还有很大的范围可以提高纵向粗糙轴承系统的性能。实际意义-从行业的角度来看,这项研究对于改善纵向粗糙的锥形板之间基于磁性流体的挤压膜的性能肯定是有用的。原创性/价值-本文介绍了由纵向粗糙的锥形板之间的磁性流体形成的挤压膜的改进性能,从而延长了轴承系统的使用寿命。

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