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首页> 外文期刊>Journal of Tribology >Analytical and Low-Order Numerical Modeling of Ball-to-Ball Contact Friction in Linear Ball Bearings and Ball Screws
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Analytical and Low-Order Numerical Modeling of Ball-to-Ball Contact Friction in Linear Ball Bearings and Ball Screws

机译:线性滚珠轴承和滚珠丝杠球对球接触摩擦的分析和低阶数值模型

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摘要

Analytical and low-order numerical models are very useful for studying friction behavior of rolling element machine components like ball bearings and ball screws. This is because they provide generalizable insights into friction behavior at much lower computational costs compared with high-order numerical models like finite element analysis (FEA). While analytical and low-order numerical models in the literature are mainly focused on ball-to-groove contact friction, experimental studies have shown that ball-to-ball contact friction is also very important. This is especially true for linear ball bearings/guideways and ball screws which, unlike rotary ball bearings, do not typically make use of caged balls to prevent ball-to-ball contact. Therefore, in this paper, low-order numerical models for ball-to-ball contact friction in linear ball bearings and ball screws are developed. Furthermore, an analytical model for ball-to-ball contact friction in four-point contact linear ball bearing is derived by making simplifications to its low-order numerical model. Compared with ball-to-ball friction predictions from FEA models developed in ANSYS, the proposed numerical models are shown in case studies to be accurate within 7%, while computing at least three orders of magnitude faster. Moreover, case studies are used to demonstrate how the developed models can be used in practice, e.g., for the mitigation of ball-to-ball contact friction in linear ball bearings and the prediction of friction variation during the operation of a ball screw.
机译:分析和低阶数值模型对于研究滚动元件机器部件的摩擦行为非常有用,如滚珠轴承和滚珠丝杠。这是因为与有限元分析(FEA)这样的高阶数值模型相比,它们可以以更低的计算成本提供更宽容的熟练程度。虽然文献中的分析和低阶数值模型主要集中在球形沟道摩擦上,但实验研究表明,球对球接触摩擦也非常重要。对于线性滚珠轴承/导轨和滚珠丝杠,这尤其如此,与旋转球轴承不同,通常不使用笼式球以防止球形接触。因此,在本文中,开发了用于线性滚珠轴承和滚珠丝杠中的球形接触摩擦的低阶数值模型。此外,通过对其低阶数值模型进行简化来导出四点接触线性滚珠轴承中球对子接触摩擦的分析模型。与来自ANSYS开发的FEA模型的球与球摩擦预测相比,所提出的数值模型被示出,以便在7%内进行准确,同时计算至少三个数量级。此外,案例研究用于演示开发的模型如何在实践中使用,例如,用于减轻线性滚珠轴承中的球形接触摩擦和滚珠丝杠的操作期间的摩擦变化的预测。

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  • 来源
    《Journal of Tribology》 |2019年第7期|共17页
  • 作者单位

    Univ Michigan Dept Mech Engn Smart &

    Sustainable Automat Res Lab GG Brown Lab 2350 Hayward Ann Arbor MI 48109 USA;

    Univ Michigan Dept Mech Engn Smart &

    Sustainable Automat Res Lab GG Brown Lab 2350 Hayward Ann Arbor MI 48109 USA;

    Univ Michigan Dept Mech Engn Smart &

    Sustainable Automat Res Lab GG Brown Lab 2350 Hayward Ann Arbor MI 48109 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械摩擦、磨损与润滑;
  • 关键词

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