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Enhanced model of load distribution along the line of contact for non-standard involute external gears

机译:非标准渐开线外齿轮沿接触线的载荷分布增强模型

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摘要

The presence of undercut at the tooth root, non-equal addendum on pinion and wheel, non-standard tooth height or non-standard center distance may have decisive influence on the load distribution along the line of contact of spur and helical gear teeth. The curve of variation of the meshing stiffness along the path of contact, quite symmetric respect the midpoint of the interval of contact, loses its symmetry for non-standard geometries and operating conditions. As a consequence, the critical contact points for bending and wear calculations may be shifted from their locations for standard gears. In this paper, a non-uniform model of load distribution along the line of contact of standard spur and helical gears, obtained from the minimum elastic potential criterion, has been enhanced to fit with the meshing conditions of the above mentioned non-standard cylindrical gear pairs. The same analytical formulation of the initial model may be used for the non-standard gears by considering appropriate values of a virtual contact ratio, which are also presented in the paper.
机译:齿根上存在咬边,小齿轮和轮上的齿顶不相等,齿距不标准或中心距不标准,可能会对沿正齿轮和斜齿轮齿接触线的载荷分布产生决定性影响。沿接触路径的啮合刚度变化曲线,相对于接触间隔的中点而言非常对称,但对于非标准几何形状和工作条件却失去了对称性。因此,用于弯曲和磨损计算的关键接触点可能会偏离标准齿轮的位置。在本文中,根据最小弹性势准则获得的沿标准正齿轮和斜齿轮接触线的载荷分布的非均匀模型已得到增强,以适应上述非标准圆柱齿轮的啮合条件对。通过考虑虚拟接触比的适当值,可以对非标准齿轮使用初始模型的相同分析公式,这也将在本文中介绍。

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