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Transient thermal elastohydrodynamic simulation of a spiral bevel gear pair with an octoidal tooth profile under mixed friction conditions

机译:混合摩擦条件下辛孔齿轮对螺旋锥齿轮对的瞬态热弹性仿真

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摘要

A simulation model for the transient thermal elastohydrodynamic calculation of spiral bevel gears with octoidal toothing is presented. The three-dimensional contact geometry is derived directly from the precise geometrical definition of the tooth flank profiles. The tooth trace can be represented both as circular arc and as extended epicycloid. The simulation model is based on the numerical solution of the generalized Reynolds equation and includes models for mass conserving cavitation, non-Newtonian flow, mixed friction and microhydrodynamics. For the temperature calculation the energy equation for the fluid and the Fourier heat equation for the solid bodies are solved. Using the example of a spiral bevel gear pair with an extended epicycloid, the capability of the presented simulation model is shown.
机译:提出了一种慢型齿齿螺旋锥齿轮瞬态热弹性流体动力学计算的仿真模型。 三维接触几何形状直接来自牙齿侧面剖面的精确几何定义。 齿迹可以作为圆弧和延伸的环状环形表示。 仿真模型基于广义雷诺式方程的数值解,包括质量保守空化,非牛顿流动,混合摩擦和微信息性能的模型。 对于温度计算,解决了流体的能量方程和固体物体的傅里叶热方程。 利用螺旋锥齿轮对与延长行环滑的示例,示出了所呈现的仿真模型的能力。

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