The Load Distribution with Modification and Misalignment and Thermal Elastohydrodynamic Lubrication Simulation of Helical Gears

Jianjian Xue, Zhenhui Zhang, Huan Wang
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引用次数: 1

Abstract

A non-uniform model of the load per unit of length distribution of helical gear with modification and misalignment was proposed based on the meshing stiffness, transmission error, and load-balanced equation. The distribution of unit-lineload, transmission error (TE), and contact press of any point on the contact plane were calculated by the numerical method. The feature coordinate system was put forward to implement the helical preliminary design and strength rating.The thermal elastohydrodynamic lubrication (EHL) model of helical gear was established, and the pressure, film, and temperature fields were obtained from the thermal EHL model.The maximum contact temperature and minimum film thickness solved by thermal EHL were applied to check the scuffing load capacity. The highest flash temperature and thinnest film occur in the dedendum of the pinion. The thermal EHL method to evaluate the scuffing load capacity is effective.
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螺旋齿轮变形与错位载荷分布及热弹流润滑仿真
基于啮合刚度、传动误差和负载平衡方程,建立了具有修形和不对中情况下斜齿轮单位长度载荷分布的非均匀模型。用数值方法计算了接触平面上任意点的单位线负荷、传动误差和接触压力的分布。提出了特征坐标系,实现了螺旋结构的初步设计和强度评定。建立了斜齿轮热弹流动力学润滑模型,得到了斜齿轮的压力场、油膜场和温度场。采用热振法求出的最大接触温度和最小膜厚对摩擦载荷进行了校核。最高的闪蒸温度和最薄的薄膜发生在小齿轮的支轴上。热EHL法是评价磨损载荷能力的有效方法。
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