用于摊销建模的广义麦克斯韦模型参数的识别方法

F. Renaud, J. Dion, G. Chevallier
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引用次数: 4

摘要

黏弹性材料的使用改变了动力系统的行为。为了对动力系统进行真实的复特征值分析,需要对粘弹性材料的行为进行建模。实验表明,这种材料的刚度和阻尼与频率有关。大量经常使用的模型不能描述这种依赖性;这就是为什么选择广义麦克斯韦模型的原因。本文介绍了一种基于模量和角度曲线的模型参数辨识方法。在所有不同的广义麦克斯韦公式中,极零公式是最适合引导识别的。然而,有些公式允许找到其他公式的参数,比如proony公式。本文提出的辨识方法是基于广义麦克斯韦模型的渐近曲线。这种识别分两步进行,首先对参数进行初始化,其次对参数进行优化。这种方法与其他方法有矛盾。如果必须在同一动力系统中对几种粘弹性材料进行建模,则有限元模型的大小与极点数量的增长一样快。减小这种尺寸的一种方法是限制所有材料的极点相等。本文提出的方法允许通过考虑这一新的约束来进行识别。
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Méthode d'identification des paramètres d'un modèle de Maxwell généralisé pour la modélisation de l'amortissement
The behaviour of dynamical systems is modified by the use of viscoelastic materials. In order to lead realistic complex eigenvalues analysis on dynamical systems, one need to model the behaviour of viscoelastic materials. The experiments show that the stiffness and the damping of such materials are frequency dependent. A large number of models often used are not able to describe this dependence; this is why the generalised Maxwell's model has been chosen. This paper describes a method based on modulus and angle curves to identify the parameters of this model. Between all the different formulations of generalized Maxwell, the pole-zero formulation is the most suited to lead the identification. However, some formulas allow to find the parameters of others formulations like the Prony one. The identification method presented here is based on the asymptotic curves of generalised Maxwell's model. This identification is led in two step, first parameters are initialised and second they are optimised. This method is confronted to others ones. If several viscoelastic materials have to be modelled in the same dynamical system, the size of the finite element model grows as quick as the number of poles. A way to reduce this size consists in constraining the poles to be equal for all materials. The method presented in this paper allows to perform the identification by taking this new constraint into account.
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Mecanique & Industries
Mecanique & Industries 工程技术-工程:机械
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