首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Study on the Load-Sharing Characteristics of an Aeronautical II-Stage Five-Branching Planets Gear Train Based on the Loaded Tooth Contact Analysis
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Study on the Load-Sharing Characteristics of an Aeronautical II-Stage Five-Branching Planets Gear Train Based on the Loaded Tooth Contact Analysis

机译:基于载荷齿接触分析的航空II级五分支行星齿轮系的载荷共享特性研究

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The aeronautical two-stage five-branching planets gear train is widely used in the internal decelerator of aeroengines and the main decelerator of helicopters. In order to study the load-sharing characteristics of the aeronautical two-stage five-branching planets gear train, a static load-sharing calculation model for this system is established. The loaded tooth contact analysis method is introduced in the static load-sharing calculation model, and the time-varying meshing stiffness condition of each gear pair is obtained. According to the characteristics of the whole system’s power flow closed-loop characteristics, the twist angle deformation coordination condition of the system is established, which includes installation error, manufacturing error, and floating factor. Using the equivalent meshing error theory, the error of the gear manufacturing and the installation error of the system are analyzed. At the same time, the floating meshing error caused by the change of the meshing side gap caused by the floating of the sun gear and the inner ring gear is considered. The moment balance condition of the sun gear based on the floating of the spline gap is established. Combined with the coordination condition of torsion angle deformation, the torque of each gear pair is obtained. The load-sharing coefficient of the system is further calculated. The influence of the manufacturing error, the installation error, and the floating amount on the load-sharing coefficient is analyzed. The results show that the load-sharing coefficient of each planets gear varies with time when the manufacturing error and installation error alone affect the load-sharing characteristic. The sun gear floating can obviously improve the load-sharing performance. The correctness of the theoretical algorithm is verified by experiments. A new method of calculating the load-sharing characteristics of this system is put forward, which provides a theoretical basis for determining the load-sharing coefficient, reasonable allocation, and control tolerance on the design.
机译:航空两级五分支行星齿轮系广泛用于航空发动机的内部减速器和直升机的主要减速器。为了研究航空两级五分支行星齿轮系的负荷分担特性,建立了该系统的静态负荷分担计算模型。在静载荷分担计算模型中引入了载荷齿接触分析方法,得到了各齿轮副的时变啮合刚度条件。根据整个系统潮流闭环特性,建立了系统的扭转角变形协调条件,包括安装误差,制造误差和浮动系数。利用等效啮合误差理论,分析了齿轮制造误差和系统安装误差。同时,考虑了由于太阳轮和内齿圈的浮动引起的啮合侧间隙的变化而引起的浮动啮合误差。建立了基于花键间隙浮动的太阳齿轮的力矩平衡条件。结合扭转角变形的协调条件,得到各齿轮副的扭矩。进一步计算系统的负载分担系数。分析了制造误差,安装误差和浮动量对载荷分担系数的影响。结果表明,当制造误差和安装误差单独影响负荷分担特性时,每个行星齿轮的负荷分担系数都会随时间变化。太阳轮浮动可以明显改善负载分担性能。实验证明了该算法的正确性。提出了一种计算系统负荷分担特性的新方法,为确定系统的负荷分担系数,合理分配和控制公差提供了理论依据。

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