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首页> 外文期刊>Journal of Vibration and Acoustics >Modal and Forced Response Analysis of Vehicle Systems With Latent Vibration Modes Due to Hydraulic Mounts
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Modal and Forced Response Analysis of Vehicle Systems With Latent Vibration Modes Due to Hydraulic Mounts

机译:液压安装件潜伏振动模式的车辆系统的模态和强制响应分析

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摘要

Hydraulic mounts used in vehicles for better isolation of vibrations were often approximated by lumped or mechanical mass-damper-spring (m-c-k) models, although deficiency in such modeling was pointed out and "hydraulic" modeling was proposed as an alternative. In this paper, a brief review on the mechanical m-c-k modeling and "hydraulic" modeling of the hydraulic mounts is presented. A simplest system consisting of a single mass and a hydraulic mount is used to illustrate both equivalence and difference in a closed form between the two modeling approaches. Then, modal analyses are done on an apparently three degrees-of-freedom (DOF) quarter car with a hydraulic mount, where the key idea is to use an internal variable for the movement of fluid mass which is responsible for a "latent" vibration mode. Equations of motion for the apparently 3DOF system, 4DOF system in fact, by the two modeling are formulated. Modal parameters by the proposed "hydraulic" modeling of the hydraulic mount are compared with those by the m-c-k modeling. Forced responses to transient base excitations are also compared between the two modeling approaches to illustrate how much errors can arise in the frequency and time domain analysis. To be more realistic, the modal and forced response analysis on a full car of an apparently 10DOF (3DOF for powertrain, 3D0F for car body, and 4DOF for knuckles and tires) with two more DOF internally for two hydraulic mounts between the powertrain and car body is presented.
机译:用于更好地隔离振动的车辆中使用的液压安装件通常通过集块或机械质量阻尼弹簧(M-C-C-K)模型来近似,尽管指出了这种建模的缺陷并提出了“液压”建模作为替代方案。本文介绍了对机械M-C-K造型和“液压”建模的简要综述。由单个质量和液压安装组成的最简单系统用于说明两种建模方法之间的封闭形式的等效性和差异。然后,模态分析是用液压安装的明显三个自由度(DOF)四分之一汽车进行的,其中关键的想法是使用内部变量来移动流体质量的运动,这负责“潜伏”振动。模式。对于显然3DOF系统,4DOF系统的运动方程实际上,由两种建模制定。通过M-C-K造型的液压安装的所提出的“液压”建模的模态参数。在两个建模方法之间比较了对瞬态基础激发的强制响应,以说明频率和时域分析中可能出现多少误差。要更加现实,模态和强制响应分析在一个明显的10dof(动力总成3DOF,车身3d0f,3dof为Knuckles和轮胎的4dof),在动力总成和汽车之间的两个液压安装件内部有两种更多的DOF身体被提出。

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