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A novel approach for lower frequency performance design of hydraulic engine mounts

机译:液压发动机悬置低频性能设计的新方法

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摘要

Nonlinear damping property of the inertia track for a generic hydraulic engine mount (HEM) is identified by experimental method and simulation approach using commercial software ADINA. The experimental method and data processing technique for obtaining linear and nonlinear resistances of fluid motion in the inertia track are presented. Three kinds of HEMs with different number of inertia tracks are designed and manufactured, and their frequency response characteristics are investigated by experimental and analytical methods. The linear and nonlinear lumped parameter (LP) models for an HEM with multiple inertia tracks (MIT) are proposed. The peak frequency of the HEM's loss angle is derived from the linear LP model and expressed in an explicit form, and the dynamic stiffness and the loss angle of an HEM are obtained from the nonlinear LP model. The calculated dynamic performances of an HEM with MITs using the proposed LP models are compared favorably with the experimental data, which validates the proposed models. The analytical methods and conclusions are instructive for the design and the tuning of the lower performance of a passive and a semi-active HEM.
机译:通过使用商业软件ADINA的实验方法和仿真方法,确定了通用液压发动机支架(HEM)惯性轨道的非线性阻尼特性。提出了获得惯性轨道中流体运动的线性和非线性阻力的实验方法和数据处理技术。设计并制造了三种具有不同惯性轨迹的HEM,并通过实验和分析方法研究了它们的频率响应特性。提出了具有多个惯性轨迹(MIT)的HEM的线性和非线性集总参数(LP)模型。 HEM损耗角的峰值频率是从线性LP模型导出的,并以显式形式表示,而HEM的动态刚度和损耗角则是从非线性LP模型获得的。使用建议的LP模型计算的带有MIT的HEM的动态性能与实验数据进行了比较,从而验证了建议的模型。分析方法和结论对无源和半有源HEM的较低性能的设计和调整具有指导意义。

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