A Load Distribution Model for Double-Planet Planetary Gear Sets

Yong Hu, David Talbot, A. Kahraman
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引用次数: 2

Abstract

In this paper, a load distribution model for a double-planet planetary gear set is developed by modifying an existing single-planet planetary gear set model [1] to account for an additional planet to planet gear mesh and their impact on phasing relationship among different sun-planet, planet-planet and planet-ring gear meshes. Similar to the single-planet planetary gear set model, the double-planet planetary gear set model accounts for effects of various component and system level variations such as supporting conditions, gear tooth modifications, manufacturing errors and kinematic configurations. The double-planet planetary gear load distribution model is derived for both rigid and flexible ring gear rim, while only parametric studies for a rigid ring gear rim is presented in this paper to demonstrate load distribution characteristics of double-planet planetary gear sets with different planet bearing stiffness and combination of various types of manufacturing errors, including pin hole position error and runout errors.
双行星行星齿轮组的载荷分配模型
本文通过对已有的单行星行星齿轮组模型[1]的改进,建立了双行星行星齿轮组的载荷分布模型,考虑了行星到行星齿轮啮合的增加及其对不同太阳行星、行星-行星和行星-环齿轮啮合的相位关系的影响。与单行星行星齿轮组模型类似,双行星行星齿轮组模型考虑了各种部件和系统级变化的影响,如支承条件、齿形修改、制造误差和运动配置。推导了双行星行星齿轮组刚性和柔性齿圈的载荷分布模型,而本文仅对刚性齿圈进行了参数化研究,以展示不同行星轴承刚度和不同制造误差(销孔位置误差和跳动误差)组合下双行星行星齿轮组的载荷分布特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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