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首页> 外文期刊>Mechanical systems and signal processing >Examination of super-harmonics in a multi-degree of freedom nonlinear vibration isolation system: Refined models and comparison with measurements
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Examination of super-harmonics in a multi-degree of freedom nonlinear vibration isolation system: Refined models and comparison with measurements

机译:多自由度非线性隔振系统中超谐波的检查:改进的模型和与测量的比较

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摘要

A multi-degree of freedom vibration isolation experiment consisting of a powertrain, three powertrain mounts including a dynamic load sensing hydraulic mount, a sub-frame, and 4 bushings is examined in both time and frequency domains. Since the hydraulic mount exhibits nonlinear phenomena, super-harmonics are observed in motion, pressure and interfacial force measurements when the system is sinusoidally excited. Refined indirect force estimation methods are proposed with a focus on the super-harmonics. This includes the development of a quasi-linear fluid system model with embedded spectrally varying and amplitude-sensitive parameters. The reverse path spectral method is employed using the measured relative motion and upper chamber pressure in the nonlinear hydraulic mount. The relevant transfer functions (with effective parameters for both rubber and hydraulic paths) are used to estimate the interfacial forces. Up to six harmonics of the fundamental excitation frequency are examined, and the contribution of each path is clarified. The proposed quasi-linear fluid system model including super-harmonics extends prior work on indirect force estimation methods and successfully predicts the interfacial forces in the multi-degree of freedom vibration isolation system. The quasi-linear fluid system model, however, seems to be inadequate in estimating the sub-harmonic responses.
机译:在时域和频域中检查了由动力总成,三个动力总成安装座组成的多自由度隔振实验,其中包括动态载荷感应液​​压座,子框架和4个衬套。由于液压支架表现出非线性现象,因此当系统正弦激励时,在运动,压力和界面力测量中会观察到超谐波。提出了一种针对超谐波的精细间接力估计方法。这包括开发具有嵌入的光谱变化和幅度敏感参数的准线性流体系统模型。反向路径谱方法是使用非线性液压支架中测得的相对运动和上部腔室压力采用的。相关的传递函数(对于橡胶和液压路径均具有有效参数)用于估计界面力。最多检查六个基本激励频率的谐波,并弄清每个路径的贡献。所提出的包括超谐波的准线性流体系统模型扩展了间接力估计方法的现有工作,并成功地预测了多自由度隔振系统中的界面力。然而,准线性流体系统模型似乎不足以估计次谐波响应。

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