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The Influence of Tooth Surface Modifications on the Sensitivity of Involute Cylindrical Gears to Manufacturing Errors

机译:齿表面改性对渐开线圆柱齿轮对制造误差敏感性的影响

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摘要

Gear drives, like all mechanical devices, are subject to manufacturing errors and defects. Higher levels of precision in manufacturing to increase the quality of the gears are costly, but sometimes required to attain sufficient performance from a gear drive. However, certain intentional microgeometry modifications to the gear tooth surfaces can be used to reduce the sensitivity of the gear drive to manufacturing errors. These changes in tooth surface design can be simple and cheap to implement, and result in a more robust gear drive which is more indifferent to manufacturing errors. In this thesis, the influence on intentional micro-geometry modifications of the gear tooth surfaces on the mechanical performance of gear drives for different levels of manufacturing errors or associated quality numbers will be investigated. The finite element method will be used to determine the extent to which these gear tooth surface modifications could be used to reduce peak contact and bending stresses in the gear tooth, as well as their influence on the gear drive's function of transmission errors. Results have shown that the application of micro-geometry modifications to the gear tooth surfaces can drastically decrease the sensitivity of peak contact and bending stresses within a gear drive to manufacturing errors, reducing the manufacturing costs and enabling higher levels of transmitted power.
机译:与所有机械设备一样,齿轮传动也容易受到制造错误和缺陷的影响。为了提高齿轮质量而在制造中更高的精度水平是昂贵的,但是有时需要从齿轮驱动器获得足够的性能。但是,可以对齿轮齿表面进行某些有意的微几何修改,以降低齿轮驱动器对制造误差的敏感性。齿面设计中的这些更改可以简单,便宜地实施,并导致齿轮驱动器更坚固耐用,而对驱动器的制造误差无动于衷。在本文中,将研究不同制造误差水平或相关质量数对齿轮齿表面的故意微几何形状修改对齿轮驱动器机械性能的影响。将使用有限元方法来确定这些齿轮齿表面修饰可用于减少齿轮齿中的峰值接触和弯曲应力的程度,以及它们对齿轮传动装置的传动误差功能的影响。结果表明,对齿轮齿表面进行微几何修改可大大降低齿轮驱动器内的峰值接触和弯曲应力对制造误差的敏感性,从而降低了制造成本并实现了更高水平的传递动力。

著录项

  • 作者

    Eisele, Scott.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Mechanical engineering.;Mechanics.;Engineering.
  • 学位 M.S.
  • 年度 2018
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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