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The spur planetary gear torsional stiffness and its crack sensitivity under quasi-static conditions

机译:准静态条件下正齿轮行星齿轮的扭转刚度及其裂纹敏感性

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摘要

The sun-planet and ring-planet tooth mesh stiffness variations and the resulting transmission errors are the main internal vibration generation mechanisms for planetary gear systems. This paper presents the results of torsional stiffness analysis of involute spur planetary gear systems in mesh using finite element methods. A planetary gear model with three planet gears and fixed ring gear and its subsystem models have been developed to study the subsystem and overall torsional stiffnesses. Based on the analysis of torsional mesh stiffness, predictive models for single branch sun-planet-ring and overall planetary gear torsional stiffnesses have been proposed. A crack coefficient was introduced to the sun-planet and ring-planet meshes to predict the effect and sensitivity of changes to the overall torsional mesh stiffness. The resulting mesh stiffness crack sensitivity of the overall gear system was analysed under quasi-static conditions. It was found that the carrier arm stiffness has great influence on the crack sensitivity while the overall stiffness was most sensitive to the crack on the sun-planet mesh. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:太阳行星齿轮和环形行星齿轮的啮合刚度变化以及由此产生的传递误差是行星齿轮系统的主要内部振动生成机制。本文介绍了使用有限元方法对渐开线圆柱齿轮行星齿轮系统的扭转刚度进行分析的结果。已经开发了具有三个行星齿轮和固定齿圈的行星齿轮模型及其子系统模型,以研究子系统和整体扭转刚度。在对扭转啮合刚度进行分析的基础上,提出了单分支太阳行星环和整个行星齿轮扭转刚度的预测模型。裂纹系数被引入到太阳行星和环形行星网格中,以预测整体扭转网格刚度变化的影响和敏感性。在准静态条件下分析了整个齿轮系统的最终啮合刚度裂纹敏感性。结果发现,承载臂的刚度对裂纹敏感性有很大的影响,而总体刚度对太阳行星网格上的裂纹最敏感。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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