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Analysis on Isothermal Elastohydrodynamic Lubrication of Orthogonal Face Gear

机译:正交面齿轮的等温弹性流体动力润滑分析

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Face-gear drives have been applied in aviation transmissions, in particular, helicopter transmissions, and the lubrication characteristics are an important indicator for estimating the load-carrying capacity of face-gear teeth. In order to analyze the lubrication performance of the face gear under load, equations for the contact path of the face gear loaded tooth contact analysis (LTCA) were established on the basis of the load equivalent error of alignment (LEEA) and the load distribution among the teeth was calculated. Then a method for calculating the contact area and tooth surface velocity of face-gear drives was studied. Face-gear isothermal elastohydrodynamic lubrication (EHL) dimensionless equations are presented. A multigrid algorithm was used to complete the solution of the minimum film thickness and film pressure of face-gear drives. The lubricant film thickness and film pressure variation in the mesh cycle are expressed using example calculations that provide a theoretical basis for face-gear lubrication design.
机译:齿轮传动装置已被应用于航空变速器,特别是直升机传动装置中,并且润滑特性是评估齿轮齿的承载能力的重要指标。为了分析端面齿轮在载荷下的润滑性能,基于对中载荷当量误差(LEEA)和载荷之间的分配,建立了端面齿轮载荷齿接触分析(LTCA)的接触路径方程。牙齿被计算了。然后研究了一种计算齿轮传动装置接触面积和齿面速度的方法。提出了齿轮等温弹性流体动力润滑(EHL)的无量纲方程。使用多重网格算法完成了齿轮传动装置的最小薄膜厚度和薄膜压力的求解。使用示例计算来表示网眼循环中的润滑剂膜厚度和膜压力变化,这些计算为面齿轮润滑设计提供了理论基础。

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