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Finite element modeling of electrospun nanofibre mesh using microstructure architecture analysis

机译:用微结构分析法对电纺纳米纤维网的有限元建模

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摘要

This investigation is aimed at modeling the tensile behavior of electrospun polyurethane (PU) membrane. The PU web is produced with different morphologies and the structural parameters are studied through SEM images. Three-dimensional network is simulated using ABAQUS software. Each fibre is modeled as hyperelastic material and each crosslink is modeled as multi point constrain tie. The stress-strain behavior of PU mat is modeled by finite element method, and the effect of fibre diameter, fibre orientation and thickness of web is investigated. The stress-strain curves of networks at three different morphologies are compared with modeling measurements. The model by using third order reduced polynominal as fibre hyperelastic potential energy function shows good agreement with experimental findings which confirm that the tensile behavior of PU web can be explained entirely by microstructure of the network.
机译:这项研究旨在模拟电纺聚氨酯(PU)膜的拉伸性能。生产出具有不同形态的PU网,并通过SEM图像研究结构参数。使用ABAQUS软件模拟三维网络。每根纤维均被建模为超弹性材料,而每个交联均被建模为多点约束连接。采用有限元方法对聚氨酯毡的应力应变行为进行了建模,研究了纤维直径,纤维取向和纤网厚度的影响。将网络在三种不同形态下的应力-应变曲线与模型测量结果进行了比较。以三阶折减多项式作为纤维超弹性势能函数的模型与实验结果吻合良好,证实了聚氨酯纤维网的拉伸行为完全可以通过网络的微观结构来解释。

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