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首页> 外文期刊>Journal of intelligent material systems and structures >An optimized cross-linked network model to simulate the linear elastic material response of a smart polymer
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An optimized cross-linked network model to simulate the linear elastic material response of a smart polymer

机译:优化的交联网络模型可模拟智能聚合物的线性弹性材料响应

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摘要

This article presents a novel approach to model the mechanical response of smart polymeric materials. A cyclobutane-based mechanophore, named smart particle in this article, is embedded in an epoxy polymer matrix to form the self-sensing smart material. A spring-bead model is developed based on the results from molecular dynamics simulation at the nanoscale to represent bond clusters of a smart polymer. The spring-bead network model is developed through parametric studies and mechanical equivalence optimization to represent the microstructure of the material. A statistical network model is introduced, which is capable of bridging the high-accuracy molecular dynamics model at the nanoscale and the computationally efficient finite element model at the macroscale. A comparison between experimental and simulation results shows that the multiscale model can capture global mechanical response and local material properties.
机译:本文提出了一种新颖的方法来对智能聚合物材料的机械响应进行建模。一种基于环丁烷的机械载体,在本文中称为智能颗粒,嵌入在环氧聚合物基质中以形成自感应智能材料。基于纳米级分子动力学模拟的结果,开发了一种弹珠模型,以表示智能聚合物的键簇。通过参数研究和机械等效性优化来开发弹簧珠网络模型,以表示材料的微观结构。介绍了一种统计网络模型,该模型能够在纳米尺度上桥接高精度分子动力学模型,并在宏观尺度上桥接计算效率高的有限元模型。实验结果和模拟结果之间的比较表明,多尺度模型可以捕获整体机械响应和局部材料属性。

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