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Effect of tooth profile modification on the durability of planetary hub gears

机译:齿形改性对行星毂齿轮耐久性的影响

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摘要

Planetary systems offer the advantage of desired speed-torque variation with a lighter, compact and coaxial construction than the traditional gear trains. Frictional losses and noise, vibration and harshness (NVH) refinement are the main concerns. Modification of gear teeth geometry to reduce friction between the mating teeth flanks of vehicular planetary hubs, as well as refining NVH under varying load-speed conditions is one of the remedial actions. However, implementing modifications can result in reduced structural integrity and system durability. Therefore, a contradiction may arise between assuring a high degree of durability and achieving better transmission efficiency, which necessitates detailed system optimisation. An integrated multi-disciplinary analytical approach, including tribology and sub-surface stress analysis is developed. As a preliminary step, tooth contact analysis (TCA) is performed to obtain contact footprint shape of meshing gear teeth pairs, as well as contact kinematics and applied load distribution. Then, an analytical time-efficient elastohydrodynamic lubrication (EHL) analysis of elliptical point contact of crowned spur gear teeth is carried out to observe the effect of gear tip relief modification upon planetary hub sub-surface stresses.
机译:行星系统提供所需的速度扭矩变化的优点,具有比传统的齿轮列车更轻,紧凑,同轴的结构。摩擦损失和噪音,振动和刺激(NVH)细化是主要问题。齿轮齿几何形状减少车辆行星中心的配合齿之间的摩擦,以及在不同负载速度条件下的改进NVH是一种补救动作。然而,实现修改可能导致结构完整性和系统持久性降低。因此,在确保高度耐久性和实现更好的传输效率之间可能出现矛盾,这需要进行详细的系统优化。开发了一种集成的多学科分析方法,包括摩擦学和子表面应力分析。作为初步步骤,进行牙齿接触分析(TCA)以获得啮合齿轮齿对的接触尺寸形状,以及接触运动学和施加的负载分布。然后,进行了一种分析时间效率的弹性流体动力学润滑(EHL)分析冠式正齿轮齿的椭圆点接触,以观察齿轮尖端浮雕修改对行星毂副表面应力的影响。

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