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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Numerical simulation of drive axles considering the nonlinear couplings between gears and bearings
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Numerical simulation of drive axles considering the nonlinear couplings between gears and bearings

机译:考虑齿轮和轴承非线性联轴器的驱动轴的数值模拟

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摘要

The drive axle is the core of the powertrain in automotive vehicles, and numerical simulation is a common and effective approach for designing and analysing drive axles. This article develops a new numerical simulation method for drive axles considering the nonlinear couplings between gears and bearings. Two types of models are proposed and integrated: a reduced model with nonlinear bearing elements and equivalent gear elements, which is efficient for nonlinear bearing simulation, and a gear contact analysis model with equivalent bearing stiffnesses, which can accurately reflect the gear mesh conditions and system deflection. The equivalent gear mesh parameters used in the reduced model are derived from the contact analysis model, and the linear equivalent bearing stiffness matrices used in the contact analysis model are derived from the reduced model. Therefore, the static equilibrium condition of the entire drive axle system is obtained through an iterative calculation process involving the two models under the same load condition. The good correlation between the numerical and experimental results of the gear-loaded contact pattern indicates that the proposed method is reliable.
机译:驱动轴是汽车车辆中动力系的核心,数值模拟是设计和分析驱动轴的常见且有效的方法。本文对考虑齿轮和轴承之间的非线性联接来开发一种新的数值模拟方法,用于驱动轴。提出并整合两种类型的模型:具有非线性轴承元件和等效齿轮元件的减少模型,其对于非线性轴承仿真,以及具有等效轴承刚度的齿轮接触分析模型,可以准确地反映齿轮网条件和系统偏转。减少模型中使用的等效齿轮网参数来自接触分析模型,并且在接触分析模型中使用的线性等效轴承刚度矩阵源自降低的模型。因此,通过涉及在相同负载条件下的两个模型的迭代计算过程获得整个驱动轴系统的静态平衡条件。齿轮加载接触模式的数值和实验结果之间的良好相关性表明所提出的方法是可靠的。

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