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INVESTIGATION OF THE MESHING CONDITIONS OF A FLAT WHEEL HARMONIC GEAR DRIVE

机译:平轮谐波齿轮传动的啮合条件的研究

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摘要

The function principle of the flat wheel harmonic gear drive is similar to the basic principle of the classical harmonic drives. The flexible and the solid gear of the drive are coaxial flat wheels. The rotating wave generator deforms periodically and elastically different portions of an annular face gear on the flexible member in axial direction into engagement with teeth on an annular face gear on the solid member. The numbers of teeth of the face gears are different. An analytical method is introduced, that investigates meshing conditions of flat-wheel harmonic drives. The numbers of the connected teeth taking part in the load-transmission and the tangential component of the acting force on them in the range of tooth engagement are calculated. It depends on the loading torque, so calculations were launched at different levels of torques in case of various parameters. The tooth flanks were approximated by planes. Results are compared with the results of calculations based on finite element analyses.
机译:wheel轮谐波齿轮传动的功能原理与经典谐波传动的基本原理相似。驱动器的柔性齿轮和实心齿轮是同轴的扁平轮。旋转波发生器使挠性构件上的环形端面齿轮的周期性且弹性不同的部分沿轴向变形,以与固体构件上的环形端面齿轮上的齿啮合。平面齿轮的齿数不同。介绍了一种分析方法,该方法研究了平轮谐波驱动器的啮合条件。计算在齿啮合范围内参与负载传递的连接齿的数量和作用在它们上的作用力的切向分量。它取决于加载扭矩,因此在使用各种参数的情况下,将在不同级别的扭矩下进行计算。齿面由平面近似。将结果与基于有限元分析的计算结果进行比较。

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