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Effect of helical tooth geometry on gear efficiency using numerical analyses in lubricated contact

机译:螺旋齿几何与润滑接触中数值分析的齿轮效率的影响

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The gearbox is the main component for adjustment of speed and torque in automotive powertrain systems. In this work, numerical simulations were conducted to analyze the effect of the gear tooth geometry on the slide-to-roll ratio (SRR) and friction coefficient along the gear engagement, as well as on the overall transmission efficiency. Simulations were carried out using the AVL Excite Power Unit software. Elastohydrodynamic theory was applied to model the lubricated contact conditions. This model considers lubricant viscosity and the entraining velocity, curvature and roughness of the contacting surfaces. The simulated system is based on a manual transmission model coupled to a differential and a rigid wheel driver, which imposes rotation and torque profiles to the gears. The radius of curvature of tooth profile and angular velocity of the gear were varied, while maintaining the same characteristics of the lubricating oil. Results indicate a correlation between the increase in the output torque (efficiency) and the reduction of SRR for different tooth profiles investigated. Furthermore, the simulations allowed the evaluation of the friction coefficient and lubrication regimes along the gearing cycle.
机译:变速箱是用于调节汽车动力总成系统中速度和扭矩的主要组件。在这项工作中,进行了数值模拟,以分析齿轮齿几何形状对齿轮接合的滑动与卷比(SRR)和摩擦系数的影响,以及整体传动效率。使用AVL Excite电源单元软件进行模拟。弹性流体动力学理论用于模拟润滑的接触条件。该模型考虑了接触表面的润滑剂粘度和夹带速度,曲率和粗糙度。模拟系统基于耦合到差速器和刚性轮驱动器的手动传输模型,其将旋转和扭矩轮廓施加到齿轮上。变化齿轮廓和齿轮的角速度的曲率半径,同时保持润滑油的相同特性。结果表明输出扭矩(效率)的增加与研究不同齿廓的SRR之间的相关性。此外,仿真允许沿着传动循环评估摩擦系数和润滑制度。

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