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Nanocellulose reinforced polymer composites: Computational analysis of structure-mechanical properties relationships

机译:纳米纤维素增强聚合物复合材料:结构-力学性能关系的计算分析

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摘要

Structure-mechanical properties relationships of nanocellulose reinforced polymer composites are studied in computational experiments. A code for the generation of 3D unit cell finite element models of nanocellulose reinforced polymers with "snake"-shaped nanocellulose fibrils is developed. The code allows the generation of pre-defined nanocomposites structures, with varied angles between nanocellulose snakes segments and hydrogen bonds between nanocellulose fibrils. In a series of computational studies, it is demonstrated that the nanocellulose reinforcement leads to higher stiffness of the matrix polymer, but makes it more brittle.
机译:在计算实验中研究了纳米纤维素增强聚合物复合材料的结构力学性能关系。开发了用于生成具有“蛇形”形纳米纤维素原纤维的纳米纤维素增强聚合物的3D晶胞有限元模型的代码。该代码允许生成预定义的纳米复合材料结构,纳米纤维素蛇形段之间的角度各不相同,纳米纤维素原纤维之间的氢键也不同。在一系列的计算研究中,证明了纳米纤维素增强导致基体聚合物的更高的刚度,但使其更脆。

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