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Development of surface wear and lapping simulation models for hypoid gears.

机译:开发准双曲面齿轮的表面磨损和研磨模拟模型。

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摘要

Surface wear is one of the failure modes observed in real-life hypoid gear sets impacting the contact patterns and the resultant noise behavior. In this study, a model is proposed to predict the surface wear of face-milled or face-hobbed hypoid gear pairs. This wear model incorporates Archard's wear model along with loaded hypoid gear tooth contact models of different types. It combines the sliding distances computed from kinematic conditions with contact pressures predicted by the contact models to find the wear distributions along the tooth surfaces. The contact pressures are obtained along the contact zones at each rotational gear position. This model is applied to a family of hypoid gear pairs having different shaft offset values to show that a larger shaft offset results in larger sliding distances and larger wear depths. Influences of the gear and pinion position errors on the resultant wear patterns are also quantified by using the wear model.;In order to reduce the computational time required by the wear simulations, an approximate method is proposed that devises an interpolation scheme to patch instantaneous wear profiles predicted at a small number of rotational increments. This approximate model is used to perform families of wear simulations with time varying gear and pinion position errors in an attempt to simulate a typical lapping process used for face-hobbed hypoid gears. As required by the lapping simulation methodology, the sensitivity of the contact positions to the magnitudes and directions of the mounting errors are quantified through the differential geometry. At the end, complete lapping simulations of hypoid gear pairs having theoretical surfaces as well as surfaces having manufacturing errors are carried out, and the influence of the lapping processes on the motion transmission error amplitudes are quantified.
机译:表面磨损是在现实的准双曲面齿轮组中观察到的会影响接触方式和由此产生的噪声行为的故障模式之一。在这项研究中,提出了一个模型来预测面铣或经滚刀的准双曲面齿轮副的表面磨损。该磨损模型将Archard的磨损模型与不同类型的加载的准双曲面齿轮齿接触模型结合在一起。它将根据运动学条件计算出的滑动距离与接触模型预测的接触压力相结合,以找到沿齿面的磨损分布。在每个旋转齿轮位置沿接触区域获得接触压力。此模型应用于具有不同轴偏移值的准双曲面齿轮副系列,以表明较大的轴偏移会导致较大的滑动距离和较大的磨损深度。通过使用磨损模型,还可以量化齿轮和小齿轮位置误差对最终磨损模式的影响。为了减少磨损模拟所需的计算时间,提出了一种近似方法,该方法设计了一种插补方案来修补瞬时磨损。以少量旋转增量预测的轮廓。该近似模型用于执行带有时变齿轮和小齿轮位置误差的磨损模拟系列,以尝试模拟用于平面滚齿双曲面齿轮的典型研磨过程。根据研磨仿真方法的要求,通过微分几何对接触位置对安装误差的大小和方向的敏感性进行了量化。最后,对具有理论表面以及具有制造误差的表面的准双曲面齿轮副进行完全的重叠仿真,并量化了研磨过程对运动传动误差幅度的影响。

著录项

  • 作者

    Park, Daehyun.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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