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A new approach for prediction of elastic modulus of polymeranoclay composites by considering interfacial debonding: Experimental and numerical investigations

机译:考虑界面剥离的聚合物/纳米粘土复合材料弹性模量预测的新方法:实验与数值研究

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摘要

In this study, experimental and numerical investigations of the elastic modulus of polymers reinforced with nanoclay are presented. First, finite element modeling of elastic modulus is employed, without considering interfacial debonding between the matrix and nanoclay. A high degree of difference between the finite element and experimental results reveals that the assumption of perfect bonding may be incomplete for nanocomposites. Because interfacial debonding has been recognized as a probable source of damage nucleation in nanocomposites, finite element modeling, accounting for interfacial debonding, is utilized secondly. Using Weibull's distribution function, the probability of debonding at the interface and the consequent, volume fraction of the debonded particles is determined. Next, these values are written into a Python based code, which is executed using ABAQUS (R). The comparative results of this study indicate that the presented numerical method exhibits a good agreement with experimental data when interfacial debonding between the matrix and nanoclay is considered. Finally, to further validation of the presented method, finite element modeling with/without considering interfacial deboning has been compared with the experimental results of published studies. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,提出了用纳米粘土增强的聚合物的弹性模量的实验和数值研究。首先,采用弹性模量的有限元建模,而不考虑基体和纳米粘土之间的界面剥离。有限元与实验结果之间的高度差异表明,对于纳米复合材料,完美结合的假设可能不完整。由于界面剥离已被认为是纳米复合材料中可能发生破坏形核的来源,因此,第二种方法利用了考虑界面剥离的有限元建模。使用威布尔分布函数,可以确定在界面处发生剥离的概率以及由此产生的剥离颗粒的体积分数。接下来,将这些值写入基于Python的代码中,该代码使用ABAQUS(R)执行。这项研究的比较结果表明,当考虑基体和纳米粘土之间的界面剥离时,所提出的数值方法与实验数据具有良好的一致性。最后,为进一步验证所提出的方法,将有/无界面去骨的有限元建模与已发表研究的实验结果进行了比较。 (C)2015 Elsevier Ltd.保留所有权利。

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