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Parameter identification procedure for heterogeneous viscoelastic composites using iterative functions

机译:迭代函数的非均质粘弹性复合材料参数识别程序

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This paper presents a new numerical procedure for the determination of the viscoelastic compliance properties of a matrix phase from a simple three-point bending test on a composite beam. The composite is modeled as elastic inclusions randomly dispersed throughout a viscoelastic matrix. It is also assumed that the spatial distribution of the inclusions in the composite is known or can be determined. Zevin's method of iterative functions is proposed for the determination of the matrix properties. Following a detailed explanation of the proposed scheme, a numerical verification is performed using three-dimensional finite-element (FE) analysis simulations. The proposed scheme was applied to the experimentally obtained creep compliance of the asphalt concrete beam. The obtained viscoelastic properties of the asphalt binder matrix phase were used as input into the FE model to simulate the behavior of the composite beam. An excellent comparison between the experimental data and the predicted beam deflections was observed. This shows that the proposed method is robust and it can be implemented to solve identification problems for viscoelastic composite materials.
机译:本文提出了一种通过对复合梁进行简单的三点弯曲试验来确定基体相的粘弹性顺应性的新数值程序。复合材料被建模为随机包含在整个粘弹性基质中的弹性夹杂物。还假设复合物中夹杂物的空间分布是已知的或可以确定的。提出了Zevin的迭代函数方法来确定矩阵的性质。在对提出的方案进行详细说明之后,使用三维有限元(FE)分析模拟进行了数值验证。将该方案应用于实验获得的沥青混凝土梁的蠕变柔度。将获得的沥青粘结剂基体相的粘弹性质输入到有限元模型中,以模拟复合梁的行为。观察到的实验数据和预测的光束偏转之间的极好的比较。这表明所提出的方法是鲁棒的,并且可以用于解决粘弹性复合材料的识别问题。

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