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Design, Meshing Characteristics and Stress Analysis of Cylindrical Gears with Curvilinear Tooth Profile

机译:曲线齿形圆柱齿轮的设计,啮合特性及应力分析

摘要

Curvilinear tooth gears are commonly produced on a face milling cutter and a hob cutter. However, this paper proposes a kind of curvilinear tooth gear which is processed by a parallel linkage with a single blade cutter. For the purpose of identifying the meshing and contact characteristics of curvilinear tooth gears, the paper covers the following: (i) equations of tooth surfaces are deduced from the meshing theory, and a parameterized geometric model is developed by applying computer graphics; (ii) an investigation into meshing characteristics for an ideal assembly condition is performed, and an instantaneous contact curve is obtained from the developed tooth contact algorithm; (iii) based on the application of the finite element method, the evolution of contact and bending stresses during the cycle of meshing and between different arc radii of the curvilinear tooth is illustrated by numerical examples. The result shows that curvilinear tooth gear drives possess a higher contact ratio, severe contact stresses on the top edge of the tooth, and lower contact and bending stresses between appropriate arc radii, hence they may replace spur gears in the future.
机译:曲线齿轮通常在平面铣刀和滚刀上生产。然而,本文提出了一种曲线齿齿轮,其通过与单刃刀具的平行联动来加工。为了确定曲线齿轮的啮合和接触特性,本文涵盖以下内容:(i)根据啮合理论推导齿面方程,并通过应用计算机图形学建立参数化的几何模型; (ii)对理想装配条件下的啮合特性进行了研究,并从改进的齿接触算法中获得了瞬时接触曲线; (iii)基于有限元方法的应用,通过数值例子说明了在啮合循环期间以及曲线齿的不同弧半径之间的接触应力和弯曲应力的变化。结果表明,曲线齿轮传动装置具有较高的接触比,在齿顶边缘上的接触应力较大,并且在适当的圆弧半径之间的接触应力和弯曲应力较小,因此将来可能会替代正齿轮。

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