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Evaluation of frequency dependent rubber mount stiffness and damping by impact test

机译:通过冲击测试评估频率相关的橡胶安装刚度和阻尼

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摘要

A simple experimental method is presented in this paper to evaluate the frequency dependent rubber mount stiffness and damping characteristics by utilizing the measured complex frequency response function from impact test and by least-squares polynomial curve fitting the data obtained from the test. The study shows the transition of the rubber mount stiffness from static to dynamic values. Using the experimentally estimated values of the rubber mount stiffness and damping, the dynamic response of the tested spring-mass system using a rubber mount as the elastic element can be accurately reproduced. In contrast, it is found that the single degree of freedom ideal spring-mass model using constant stiffness and damping values can only predict the response of the system accurately at resonance but not at non-resonance frequencies. The proposed method is validated by comparing its results with those obtained by using mechanical shaker excitations and those of conventional direct stiffness method using blocked transfer frequency response functions.
机译:本文提出了一种简单的实验方法,通过利用冲击试验中测得的复数频率响应函数并通过最小二乘多项式曲线拟合从试验中获得的数据来评估与频率相关的橡胶安装刚度和阻尼特性。研究表明,橡胶安装刚度从静态值到动态值的过渡。使用橡胶支座刚度和阻尼的实验估算值,可以精确地再现使用橡胶支座作为弹性元件的受测弹簧质量系统的动态响应。相反,发现使用恒定刚度和阻尼值的单自由度理想弹簧质量模型只能准确预测系统在共振时的响应,而不能在非共振频率下预测。通过将其结果与使用机械振动器激励获得的结果以及使用阻塞传递频率响应函数的常规直接刚度方法的结果进行比较,验证了该方法的有效性。

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