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Non-linear modelling of hydraulic mounts: Theory and experiment

机译:液压支架的非线性建模:理论与实验

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This paper focuses on the development of a complete non-linear model of a hydraulic engine mount and the evaluation of the model using a unique experimental apparatus. The model is capable of capturing both the low- and high-frequency behavior of hydraulic mounts. The results presented here provide a significant improvement over existing models by considering all non-linear aspects of a hydraulic engine mount. Enhancements to already published non-linear models include a continuous function that follows a simplistic yet effective approach to capture the switching effect and leakage through the decoupler, and upper chamber bulge damping. It is shown that the model developed here provides the appropriate system response over the full range of loading conditions (frequency and amplitude) encountered in practice. In order to obtain the parameter values for the non-linear model, a unique test apparatus is introduced. Using the experimental set-up, it is possible to verify the model of individual components of the mount, and later on test the behavior of the whole assembly. These data also establish the relative importance of several damping, inertia and stiffness terms. In addition, the measured responses of the mounts to loading at various frequencies and amplitudes are compared to the predictions of the mathematical model. The comparisons generally show a very good agreement (better than 10%), which corroborate the non-linear model of the mount. It is felt that this work will help engineers in reducing mount design time, by providing insight into the effects of various parameters within the mount. (C) 2002 Academic Press. [References: 17]
机译:本文着重于开发液压发动机支架的完整非线性模型,并使用独特的实验设备对模型进行评估。该模型能够捕获液压支架的低频和高频行为。通过考虑液压发动机支座的所有非线性方面,此处提供的结果比现有模型有显着改进。对已发布的非线性模型的增强包括一个连续函数,该函数遵循一种简单而有效的方法来捕获开关效果和通过去耦器的泄漏以及上腔室凸出阻尼。结果表明,此处开发的模型可在实际遇到的整个负载条件(频率和幅度)范围内提供适当的系统响应。为了获得非线性模型的参数值,引入了独特的测试设备。使用实验设置,可以验证安装座的各个组件的模型,然后在以后测试整个组件的性能。这些数据还确定了几个阻尼,惯性和刚度项的相对重要性。此外,将测得的安装座在各种频率和振幅下对负载的响应与数学模型的预测进行比较。比较结果通常显示出很好的一致性(优于10%),这证实了支架的非线性模型。可以感觉到,这项工作将通过深入了解安装座内各种参数的影响,来帮助工程师减少安装座的设计时间。 (C)2002学术出版社。 [参考:17]

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