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A Method for Thermal Analysis of Spiral Bevel Gears

机译:弧齿锥齿轮热分析的一种方法

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摘要

A modeling method for analyzing the three-dimensional thermal behavior of spiral bevel gears has been developed. The model surfaces are generated through application of differential geometry to the manufacturing process for face-milled spiral bevel gears. Contact on the gear surface is found by combining tooth contact analysis with three-dimensional Hertzian theory. The tooth contact analysis provides the principle curvatures and orientations of the two surfaces. This information is then used directly in the Hertzian analysis to find the contact size and maximum pressure. Heat generation during meshing is determined as a function of the applied load, sliding velocity, and coefficient of friction. Each of these factors change as the point of contact changes during meshing. A nonlinear finite element program was used to conduct the heat transfer analysis. This program permitted the time- and position-varying boundary conditions, found in operation, to be applied to a one-tooth model. An example model and analytical results are presented.
机译:提出了一种分析螺旋锥齿轮三维热行为的建模方法。通过将微分几何应用于面铣螺旋锥齿轮的制造过程来生成模型表面。通过将齿接触分析与三维赫兹理论相结合,可以发现齿轮表面上的接触。牙齿接触分析提供了两个曲面的主曲率和方向。然后,此信息直接用于赫兹分析中,以找到接触尺寸和最大压力。啮合过程中产生的热量取决于所施加的载荷,滑动速度和摩擦系数。这些因素中的每一个都会随着网格化过程中接触点的变化而变化。使用非线性有限元程序进行传热分析。该程序允许将在操作中发现的随时间和位置变化的边界条件应用于单齿模型。给出了示例模型和分析结果。

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