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Equivalent Dynamic Stiffness Mapping technique for identifying nonlinear structural elements from frequency response functions

机译:用于从频率响应函数中识别非线性结构元素的等效动态刚度映射技术

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摘要

A simple and general Equivalent Dynamic Stiffness Mapping technique is proposed for identifying the parameters or the mathematical model of a nonlinear structural element with steady-state primary harmonic frequency response functions (FRFs). The Equivalent Dynamic Stiffness is defined as the complex ratio between the internal force and the displacement response of unknown element. Obtained with the test data of responses' frequencies and amplitudes, the real and imaginary part of Equivalent Dynamic Stiffness are plotted as discrete points in a three dimensional space over the displacement amplitude and the frequency, which are called the real and the imaginary Equivalent Dynamic Stiffness map, respectively. These points will form a repeatable surface as the Equivalent Dynamic stiffness is only a function of the corresponding data as derived in the paper. The mathematical model of the unknown element can then be obtained by surface-fitting these points with special functions selected by priori knowledge of the nonlinear type or with ordinary polynomials if the type of nonlinearity is not pre-known. An important merit of this technique is its capability of dealing with strong nonlinearities owning complicated frequency response behaviors such as jumps and breaks in resonance curves. In addition, this technique could also greatly simplify the test procedure. Besides there is no need to pre-identify the underlying linear parameters, the method uses the measured data of excitation forces and responses without requiring a strict control of the excitation force during the test. The proposed technique is demonstrated and validated with four classical single-degree-of-freedom (SDOF) numerical examples and one experimental example. An application of this technique for identification of nonlinearity from multiple-degree-of-freedom (MDOF) systems is also illustrated.
机译:提出了一种简单通用的等效动态刚度映射技术,用于识别具有稳态一次谐波频率响应函数(FRF)的非线性结构元件的参数或数学模型。当量动态刚度定义为内力与未知单元的位移响应之间的复比。根据响应频率和幅度的测试数据,将等效动态刚度的实部和虚部绘制为三维空间中位移振幅和频率上的离散点,称为实点和虚部等效动态刚度地图。这些点将形成可重复的表面,因为等效动态刚度仅是本文中得出的相应数据的函数。然后,可以通过将这些点与通过非线性类型的先验知识选择的特殊函数进行表面拟合,或者使用非线性未知类型的普通多项式来拟合这些未知点,从而获得未知元素的数学模型。该技术的一个重要优点是它能够处理具有复杂频率响应行为(如谐振曲线中的跳跃和断裂)的强非线性。此外,该技术还可以大大简化测试过程。除了不需要预先确定基本的线性参数外,该方法还使用测得的激振力和响应数据,而无需在测试过程中严格控制激振力。通过四个经典的单自由度(SDOF)数值示例和一个实验示例对所提出的技术进行了演示和验证。还说明了该技术在多自由度(MDOF)系统中识别非线性的应用。

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