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首页> 外文期刊>International Journal of Vehicle Noise and Vibration >Dynamic characteristic simulation of hydraulically damped rubber mount based on finite element parameter estimation for vehicle powertrain
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Dynamic characteristic simulation of hydraulically damped rubber mount based on finite element parameter estimation for vehicle powertrain

机译:基于有限元参数估计的车辆动力总成液压阻尼橡胶支座动态特性仿真

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摘要

Performance analysis of the dynamic characteristics of hydraulically damped rubber mounts (HDM) faces challenges owing to the fluid-structure interaction between rubber springs and fluid in chambers, non-linear material properties of rubber parts and turbulent flow in chambers and fluid track linking chambers. In this article, finite element-based parameter estimation and lumped-parameter modelling of HDM are developed for numerical simulation of dynamic characteristic of HDM. Dynamic characteristics of a typical HDM with fixed decoupler are predicted and compared with experimental results, which verify the effectiveness of the proposed approach. The presented approach provides design guidelines for HDM to meet vibration isolation requirements of a powertrain mount system through parameter adjustment.
机译:由于橡胶弹簧和腔室内流体之间的流固耦合,橡胶零件的非线性材料特性以及腔室和流体通道连接腔室内的湍流,液压阻尼橡胶支座(HDM)的动态特性的性能分析面临挑战。本文开发了基于有限元的HDM参数估计和集总参数模型,以对HDM的动态特性进行数值模拟。预测了具有固定解耦器的典型HDM的动态特性,并将其与实验结果进行了比较,从而验证了所提方法的有效性。提出的方法为HDM提供了设计准则,以通过参数调整来满足动力总成安装系统的隔振要求。

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