扭矩
刚度
推力
传输(电信)
推力轴承
功率(物理)
控制理论(社会学)
动力传输
工作(物理)
多边形网格
还原(数学)
工程类
结构工程
计算机科学
机械工程
物理
数学
电气工程
几何学
控制(管理)
量子力学
人工智能
热力学
计算机图形学(图像)
作者
Mohammad Mehdi Rashidi,Timothy L. Krantz
标识
DOI:10.1115/detc1992-0044
摘要
Abstract A high reduction ratio split torque gear train has been proposed as an alternative to a planetary configuration for the final stage of a helicopter transmission. A split torque design allows a high ratio of power-to-weight for the transmission. The design studied in this work includes a pivoting beam that acts to balance thrust loads produced by the helical gear meshes in each of two parallel power paths. When the thrust loads are balanced, the torque is split evenly. A mathematical model was developed to study the dynamics of the system. The effects of time varying gear mesh stiffness, static transmission errors, and flexible bearing supports are included in the model. The model was demonstrated with a test case. Results show that although the gearbox has a symmetric configuration, the simulated dynamic behavior of the first and second compound gears are not the same. Also, results show that shaft location and mesh stiffness tuning are significant design parameters that influence the motions of the system.
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