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A new and efficient constitutive model based on fractional time derivatives for transient analyses of viscoelastic systems

机译:基于粘弹性系统瞬态分析的基于分数时间衍生物的一种新的高效组成模型

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摘要

In the open literature, many authors have used the fractional calculus in conjunction with the finite element method to model certain viscoelastic systems. The so-named fractional derivative model may be a better option for transient analyses of systems containing viscoelastic materials due to its causal behavior and its capability to fit accurately the viscoelastic damping properties and to represent properly their fading memory. However, depending on the situation, it leads to costly computations due to the integration of the non-local viscoelastic displacement and stress fields, especially for long time intervals. In this contribution, it is proposed a new and efficient general three-dimensional fractional constitutive formulation based on the use of a recurrence term to give a simplest and low-cost constitutive law to describe the frequency- and temperature-dependent behavior of viscoelastic materials, especially for complex systems. To demonstrate the efficiency and accuracy of the proposed formulation compared with those available in the literature, an academic example formed by a thin three-layer sandwich plate is performed and the main features and capabilities of the proposed methodology are highlighted.
机译:在公开文学中,许多作者结合了分数模次来模拟了某些粘弹性系统的有限元法。如此命名的分数衍生模型可以是由于其因果行为和其精确粘弹性阻尼特性而设计的粘弹性材料的系统的瞬态分析,并且其能够正确地表示它们的衰落记忆。然而,根据情况,它导致昂贵的计算,因为非局部粘弹性位移和应力场的集成,特别是对于长时间间隔。在这一贡献中,提出了一种基于使用复发项的新的和高效的一般三维分数构造,以给出最简单和低成本的本质法,描述粘弹性材料的频率和温度依赖性行为,特别适用于复杂的系统。为了证明所提出的制剂的效率和准确性与文献中可用的效率和准确性相比,进行了薄的三层夹层板形成的学术例子,并突出了所提出的方法的主要特征和能力。

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