首页> 外文期刊>Industrial Lubrication and Tribology >Magnetic fluid-based squeeze film between porous rotating rough circular plates
【24h】

Magnetic fluid-based squeeze film between porous rotating rough circular plates

机译:多孔旋转粗糙圆形板之间的磁性流体基挤压膜

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose - The purpose of this paper is to study and analyze the effect of roughness and magnetic fluid lubricant on the performance of the squeeze film formed when the upper plate with a porous facing approaches an impermeable and flat lower plate by considering the rotation of the plates. Design/methodology/approach - The roughness of the bearing surface is modeled by a stochastic random variable with non-zero mean, variance and skewness. The associated Reynolds' equation is stochastically averaged with respect to the random roughness parameter. Results for bearing performance characteristics such as load-carrying capacity and response time for various values of mean, standard deviation and measure of symmetry are numerically computed. The results are presented graphically as well as in tabular form. Findings - It is observed that the bearing suffers owing to the transverse surface roughness. However, negatively skewed roughness may enhance the performance of the bearing system for suitable values of variance. It is also seen that rotation decreases the load-carrying capacity but it has marginal influence in the presence of the magnetic fluid. Further, the performance of the bearing system registers a steady improvement with the increasing values of the magnetization parameter. In addition, the response time follows the trends of the load-carrying capacity. Originality/value - The originality of the paper lies in the fact that the roughness must be accounted for while designing the bearing system, even though a suitable rotation ratio parameter is chosen in the presence of a strong magnetic fluid. Of course, the best performance of the bearing system is registered in the case of negatively skewed roughness.
机译:目的-本文的目的是研究并分析粗糙度和磁性流体润滑剂对带有多孔面的上板接近不渗透且平坦的下板时形成的挤压膜性能的影响,方法是考虑板的旋转。设计/方法/方法-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。相对于随机粗糙度参数,随机关联了相关的雷诺方程。数值计算轴承性能特征的结果,例如承载能力和对各种平均值,标准偏差和对称性度量值的响应时间。结果以图形和表格形式显示。发现-观察到轴承由于横向表面粗糙度而受损。但是,对于合适的方差值,负偏度粗糙度可以增强轴承系统的性能。还可以看出,旋转降低了承载能力,但是在磁性流体的存在下它具有很小的影响。此外,轴承系统的性能随着磁化参数值的增加而得到稳定的提高。此外,响应时间遵循负载能力的趋势。独创性/值-纸张的独创性在于,即使在强磁性流体的存在下选择了合适的旋转比参数,在设计轴承系统时也必须考虑粗糙度。当然,在负偏度粗糙的情况下,轴承系统的最佳性能也得到了体现。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号