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Performance Analysis of High-Speed Deep/Shallow Recessed Hybrid Bearing

机译:高速深/浅嵌入式混合轴承性能分析

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摘要

The present paper proposes a theoretical analysis of the performance of deep/shallow recessed hybrid bearing. It is intended that, on the basis of the numerical results drawn from this study, appropriate shallow recess depth and width can be determined for use in the bearing design process. By adopting bulk flow theory, the turbulent Reynolds equation and energy equation are modified and solved numerically including concentrated inertia effects at the recess edge with different depth and width of shallow recess. The results indicate that the load capacity, drag torque increases as the depth of shallow recess is shallower and the width ratio (half angle of deep recess versus half angle of shallow recess) is smaller. In contrast, the flow rate decreases as the depth of shallow recess is shallower and the width ratio is smaller. Nevertheless, the appropriate design of the depth and width of shallow recess might well induce the performance of high-speed deep/shallow recessed hybrid bearing.
机译:本文提出了深/浅嵌入式混合轴承性能的理论分析。它的目的是,根据从该研究中得出的数值结果,可以确定适当的浅凹陷深度和宽度用于轴承设计过程。通过采用散装流理论,湍流雷诺方程和能量方程在数量上进行修改和解决,包括具有不同深度和浅凹槽的不同深度和宽度的凹陷边缘处的集中惯性效应。结果表明,随着浅凹槽深度的较浅,宽度比(深凹槽的半角为半角的半角的半角的半角)较小。相反,随着浅凹槽的深度较浅的流速减小,宽度比较小。尽管如此,浅凹槽的深度和宽度的适当设计可能很好地诱导高速深/浅嵌入式混合轴承的性能。

著录项

  • 作者

    Lei Wang; Shuyun Jiang;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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