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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Finite element-based parameter estimations for a characteristic simulation model of a hydraulically damped rubber mount for vehicle engines
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Finite element-based parameter estimations for a characteristic simulation model of a hydraulically damped rubber mount for vehicle engines

机译:用于车辆发动机的液压阻尼橡胶支座特性仿真模型的基于有限元的参数估计

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摘要

The hydraulically damped rubber mount (HDM) is widely used for vibration isolation in automotive powertrains and other dynamic systems. In predictions of its dynamic characteristics, some key parameters or parametric characteristics in the lumped-parameter dynamic analysis model of an HDM, such as the volumetric elastic characteristics of fluid chambers and the equivalent piston cross-sectional area of the upper chamber, must be especially determined, because they are difficult to measure by experiment owing to fluid-structure interactions (FSIs). In this paper, a numerical simulation approach of volumetric elastic characteristics is developed on the basis of finite element analysis methods relating to rubber material hyperelasticity and hydrostatic FSI using ABAQUS software. Volumetric elastic characteristics of the upper fluid chamber, including the main rubber spring and/or uncoupling rubber membrane, and that of the lower fluid chamber are identified; volumetric stiffness and equivalent piston cross-sectional area are also calculated for further dynamic characteristic simulations of HDM. The contributions of different rubber parts to the volumetric elastic characteristics of the upper chamber are revealed. Predications of dynamic characteristics and frequency response analysis of a typical HDM with fixed decoupler verify the effectiveness of the proposed parameter identification method. The proposed simulation methods of volumetric elastic characteristics can be applied to other FSI systems.
机译:液压阻尼橡胶支座(HDM)广泛用于汽车动力总成和其他动力系统的隔振。在预测其动态特性时,必须特别注意HDM集总参数动态分析模型中的一些关键参数或参数特性,例如流体腔的体积弹性特性和上腔的等效活塞截面积。确定,因为它们由于流固耦合(FSI)难以通过实验测量。本文在有限元分析方法的基础上,利用ABAQUS软件,建立了橡胶材料超弹性和静液压FSI的体积弹性特性数值模拟方法。确定上部流体腔室的体积弹性特性,包括主橡胶弹簧和/或解耦橡胶膜,以及下部流体腔室的体积弹性特性;还计算了体积刚度和等效活塞截面积,以用于HDM的进一步动态特性仿真。揭示了不同橡胶部件对上部腔室体积弹性特征的贡献。具有固定解耦器的典型HDM的动态特性预测和频率响应分析证明了所提出的参数识别方法的有效性。所提出的体积弹性特征的仿真方法可以应用于其他FSI系统。

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