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Fast tooth root load capacity optimization based on improved design of hob geometry

机译:基于滚刀几何设计的快速齿根负荷能力优化

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摘要

The competitiveness of gearboxes is significantly influenced by their performance ability. Increasing the tooth root load capacity has always been in focus of current research because in case of a failure of the gearwheel due to a tooth root fracture, the complete gearbox fails. This paper presents a new calculation method that enables the optimization of hob geometries within a few minutes so that they lead to reduced stresses in the tooth root fillet of spur gears. This results in reductions of the maximum tooth root stress of 10% and more for most gearwheels. The manufacturing costs for the optimized hob are only influenced slightly. In order to increase the computational speed compared to purely FE-based optimization methods, the present paper shows a method in which the decisive part of the optimization process is based on an analytical equation which are derived by a small number of FE-calculations.
机译:齿轮箱的竞争力受其性能能力的显着影响。增加齿根负荷能力一直是当前研究的焦点,因为如果由于齿根骨折导致的齿轮故障,则完整的齿轮箱失败。本文介绍了一种新的计算方法,使得在几分钟内能够优化滚刀几何形状,使得它们导致齿轮齿根圆角的应力降低。这导致最大齿根应力为大多数齿轮的最大齿根应力。优化滚刀的制造成本仅略微影响。为了使计算速度增加与纯FE的优化方法相比,本文示出了一种方法,其中优化过程的决定性部分基于由少量FE计算来源的分析方程。

著录项

  • 作者

    Ray Uelpenich; Peter Tenberge;

  • 作者单位
  • 年度 2019
  • 总页数
  • 原文格式 PDF
  • 正文语种 fra/fre;eng
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