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Generalized fractional maxwell model : parameter estimation of a viscoelastic material

机译:广义分数麦克斯韦模型:粘弹性材料的参数估计

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摘要

In this paper, we show how fractional viscoelastic models can be efficient in the modeling of linear viscoelastic behavior, increasing the fitting accuracy of classic generalized viscoelastic models, such as the Generalized Maxwell model. Experimental data (Loss and Storage modulus in the frequency domain) were retrieved from a Dynamic Mechanical Analysis test considering Carbon Fibre Reinforced Polymer samples. The estimated parameters, for the derived fractional viscoelastic models, were obtained through numerical optimization techniques that minimize the difference between model-predicted values and experimental data. An excellent correlation between analytical and experimental results was observed, minimizing numerical instabilities found on a previous work, for the same experimental setup.
机译:在本文中,我们展示了分数粘弹性模型如何有效地建模线性粘弹性行为,从而提高了经典广义粘弹性模型(例如,广义Maxwell模型)的拟合精度。实验数据(频域中的损耗和储能模量)是从考虑碳纤维增强聚合物样品的动态力学分析测试中获得的。通过数值优化技术获得了导出的分数粘弹性模型的估计参数,该技术使模型预测值和实验数据之间的差异最小。对于相同的实验设置,观察到的分析结果与实验结果之间具有极好的相关性,从而最大程度地减少了先前工作中发现的数值不稳定性。

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