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首页> 外文期刊>Journal of the American Helicopter Society >Parametric Instability of Face-Gear Drives due to Meshing Loads
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Parametric Instability of Face-Gear Drives due to Meshing Loads

机译:由于啮合载荷而导致的齿轮传动装置的参数不稳定性

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We investigate the parametric instability behavior of face-gear drives with a spur pinion by modeling face-gear and pinion tooth geometry and kinematics. The out-of-plane dynamics of the face-gear are excited by periodically time-varying gear tooth meshing load variations. Here an annular spinning Kirchhoff plate with centrifugal stiffening effects and a meshing load unit with prescribed movements are used to model face-gear drive, and Floquet theory is employed to determine the system stability. Additionally, we consider the maximum bending stresses at the root of pinion tooth to restrict the face-gear size. Tregold's approximation is utilized to calculate the contact ratio of face-gear drives. Finally, an example of prototype helicopter face-gear drives is studied at different operating speeds and meshing loads. The results characterize the parametric instability regions as a function of rotation speed, meshing load, and face-gear disk thickness. Moreover, the minimum critical thickness to sustain the system stability over the entire operating speed region is determined as well. These analyses and results provide novel and important insights into the dynamics and design of the lightweight face-gear drives.
机译:我们通过对齿轮和小齿轮的几何形状和运动学建模,研究了带有正齿轮的齿轮驱动器的参数不稳定性行为。通过周期性地随时间变化的齿轮啮合啮合负荷变化来激发齿轮的平面外动力。在此,使用具有离心加强作用的环形旋转基尔霍夫板和具有规定运动的啮合载荷单元来模拟面齿轮驱动,并采用Floquet理论确定系统稳定性。此外,我们认为小齿轮齿根处的最大弯曲应力会限制端面齿轮的尺寸。 Tregold的近似值用于计算齿轮传动装置的接触比。最后,以不同的工作速度和啮合载荷研究了原型直升机面齿轮驱动器的示例。结果将参数不稳定性区域表征为转速,啮合载荷和面齿轮盘厚度的函数。此外,还确定了在整个运行速度范围内维持系统稳定性的最小临界厚度。这些分析和结果为轻型齿轮传动的动力学和设计提供了新颖而重要的见解。

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