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首页> 外文期刊>Journal of Sound and Vibration >A study of the non-linear dynamic response of spur gear using a multibody contact based model with flexible teeth
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A study of the non-linear dynamic response of spur gear using a multibody contact based model with flexible teeth

机译:采用多体接触基于柔性齿的微体接触模型的非线性动力响应研究

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摘要

This paper proposes a refined methodology to simulate the non-linear dynamic response of spur gears. The multibody model is based on a penalty contact formulation and considers teeth as separated bodies elastically attached to the main body with revolute joints. One of the advantages of this model is that there is no need to use, as a source of excitation, external variables as, for example, time-varying mesh stiffness, and static transmission error input. Moreover, the computational time is reduced if compared to a finite element method (FEM) model. The modelling strategies are preliminary described in detail and a novel analytical procedure for the identification of the elastic parameters is included. A FEM model is used for testing the gears response in quasi static conditions. This preliminary comparison allows to evaluate the accuracy of the estimated stiffness values. After that, dynamic conditions varying the mesh frequency have been introduced to simulate the non-linear behaviour caused by the contact loss at certain rotating speeds. The dynamic transmission error, computed on the basis of the proposed methodology, has been successfully compared with experimental data available in literature. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种精致的方法来模拟正齿轮的非线性动力响应。多体模型基于惩罚触点配方,并将牙齿视为具有旋转关节的主体弹性的分离体。该模型的一个优点是,不需要使用,作为激励的源,外部变量,例如时变网格刚度和静态传输错误输入。此外,与有限元方法(FEM)模型相比,计算时间减少。建模策略详细描述,包括用于识别弹性参数的新型分析程序。 FEM模型用于测试准静态条件下的齿轮响应。该初步比较允许评估估计的刚度值的准确性。之后,已经引入了改变网格频率的动态条件来模拟由某些旋转速度的接触损耗引起的非线性行为。基于所提出的方法计算的动态传输误差已经成功地与文献中可用的实验数据进行了成功。 (c)2019 Elsevier Ltd.保留所有权利。

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