固定环形齿轮结构顺应性对双环齿轮组准静态和动态响应的影响

L. Ryali, David Talbot
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摘要

环形齿轮的结构顺应性会显著影响双环齿轮组的准静态和动态性能。随着动力总成部件不断优化到设计极限,这种影响变得越来越突出,再也不容忽视。本文将研究固定齿圈运动配置下齿圈顺从性对双曲面齿轮组动态响应的影响。为实现这一目标,本研究将在 Ryali 和 Talbot [1] 的三维行星载荷分布模型中加入基于有限元的环形齿轮配方。所提出的模型采用改进的单纯形算法,结合数值积分方案对弹性齿轮啮合接触进行迭代求解,从而使其能够捕捉到多个组件和系统级设计变化的内在影响。所开发的公式用于进行参数研究,涉及不同的行星齿轮设计、环形齿轮固定装置(螺栓固定与花键固定)和工作条件(准静态、动态)。在花键环形齿轮夹具的情况下,开发了外部花键齿接触模型,该模型将用于根据 Ligata 等人[2]的准静态实验进行验证。所讨论的结果证明了所开发模型的保真度,从而使其成为设计和分析带有薄环形齿轮的行星齿轮的绝佳工具。
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Influence of Fixed Ring Gear Structural Compliance on the Quasi-Static and Dynamic Response of Epicyclic Gear Sets
The structural compliance of annular ring gear can significantly influence the quasi-static and dynamic performance of an epicyclic gear set. As powertrain components are continually being optimized to their design limits, this influence becomes prominent and can no longer be ignored. The current paper will study the impact of ring gear compliance on the dynamic response of epicyclic gear sets, in fixed ring kinematic configuration. To achieve this objective the current study will incorporate a finite element based ring gear formulation into the three-dimensional planetary load distribution model of Ryali and Talbot [1]. The proposed model employs a modified simplex algorithm to iteratively solve for the elastic gear mesh contacts in conjunction with a numerical integration scheme, which enables it to inherently capture the influence of several component and system level design variations. The developed formulation is used to conduct parametric studies involving different planetary gear designs, ring gear fixtures (bolted vs. splined), and operating conditions (quasi-static, dynamic). In the case of a splined ring gear fixture, an external splined tooth contact model is developed, which will be used to validate the model against the quasi-static experiments of Ligata et al. [2]. The discussed results demonstrate the fidelity of the developed model, thus making it an excellent tool for the design and analysis of planetary gears with thin annular ring gears.
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