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Optimal discrete-time Prony series fitting method for viscoelastic materials

机译:用于粘弹性材料的最佳离散时间掌系拟合方法

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Viscoelastic models based on Prony series are usually used due to easy implementation in finite element analysis codes. The experimental data are fitted to a Prony series using a user-chosen number of terms represented by two coefficients. The time coefficients i are previously fixed in the time scale to determine the second parameter of the model. Usually, a homogeneous distribution in the logarithmic-time scale is used for i. When short-time curves must be fitted or the relaxation curve shape is not uniformly distributed in time, the homogeneous distribution of time coefficients could be a significant drawback, since a large number of coefficients might be needed or even a reasonable fitting is not possible.In this study, an optimized i distribution method for fitting master curves of viscoelastic materials based on Prony series model is proposed. The method is based on an optimization algorithm strategy to allocate the time coefficients along the time scale to obtain the best fit. The method is validated by using experimental data of temporomandibular joint disc, which presents a short-time and high relaxation rate viscoelastic curve. The method improves significantly the fitting of the viscoelastic curves when compared with uniformly distributed time fittings.Furthermore, the optimized coefficients are also used to obtain the complex moduli of the material using an analytical conversion, which are then compared with the experimental complex moduli curves of the material.
机译:由于有限元分析代码中的简单实现,通​​常使用基于PRONY系列的粘弹性模型。使用由两个系数表示的用户选择的用户选择的术语,实验数据适用于Proy系列。以前在时间尺度中固定的时间系数I以确定模型的第二个参数。通常,对数时间尺度的均匀分布用于i。当必须安装短时曲线或者松弛曲线形状不均匀分布时,时间系数的均匀分布可能是一个显着的缺点,因为可能需要大量系数甚至不可能合理的配件。在该研究中,提出了一种优化的基于PRONY系列模型的粘弹性材料主曲线的优化I分配方法。该方法基于优化算法策略,以沿着时间尺度分配时间系数以获得最佳拟合。通过使用颞下颌关节盘的实验数据验证该方法,这呈现了短时间和高弛豫速率粘弹性曲线。与均匀分布的时间配件相比,该方法显着改善了粘弹性曲线的配合。使用分析转化,优化系数也用于获得材料的复杂模量,然后将其与实验复合模曲线进行比较材料。

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