首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Nonlinear fluid damping models for hydraulic bushing under sinusoidal or transient excitation
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Nonlinear fluid damping models for hydraulic bushing under sinusoidal or transient excitation

机译:正弦或瞬态励磁下液压衬套的非线性流体阻尼模型

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摘要

Hydraulic bushings are typically characterized in terms of sinusoidal dynamic stiffness at lower frequencies over a range of excitation amplitudes. However, in practice they are also exposed to severe transient loads in conjunction with sinusoidal excitations. Three improved nonlinear, lumped parameter models for hydraulic bushings are developed with the goal of concurrently predicting amplitude-sensitive dynamic responses to both sinusoidal and step-like excitations using a common dynamic model with the same parameters. First, a fluid resistance element is introduced which extends previous formulations by relaxing the assumption of fully developed turbulent flow, and capturing the transition from laminar flow to turbulence. Second, a bleed orifice element between the two compliance chambers is incorporated to simulate leakage observed in laboratory testing. The sensitivity of the dynamic responses to linearized model parameters is used to guide the parameter identification procedure. Measured dynamic stiffness spectra and step-like responses provide experimental validation of the proposed formulations. The new formulations achieve improved predictions of dynamic stiffness or force using exactly the same set of model parameters at several excitation amplitudes in both time and frequency domains.
机译:液压衬套通常以较低频率在一系列激发幅度的较低频率下的正弦动态刚度而表征。然而,在实践中,它们也与正弦激励结合起来暴露于严重的瞬态载荷。三种改进的非线性非线性,用于液压衬套的集成参数模型,目的是使用具有相同参数的公共动态模型来同时预测对正弦和阶梯状激动的幅度敏感动态响应。首先,引入流体阻力元件,其通过松弛完全发育的湍流的假设,并捕获从层流到湍流的过渡。其次,在实验室测试中结合了两个合规室之间的出血孔元件以模拟观察到的泄漏。用于线性化模型参数的动态响应的灵敏度用于指导参数识别过程。测量的动态刚度光谱和步骤样响应提供了所提出的制剂的实验验证。新配方在多个时间和频率域中的几个激发幅度下使用完全相同的模型参数来实现对动态刚度或力的改进预测。

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