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Competition of Diffusion and Crosslink on the Interphase Region in Carbon Fiber/Epoxy Analyzed by Multiscale Simulations

机译:多尺度模拟分析碳纤维/环氧树脂界面区域的扩散和交联竞争

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摘要

Molecular diffusion and crosslink between sizing, epoxy, and hardener agent were simulated to elucidate forming process of interphase in carbon fiber/epoxy composite, by using a multiscale method, in which fully atomistic molecular dynamics (MD), coarsegrained dissipative particle dynamics (DPD) and Monte Carlo-like polymerizing models are used in combination. It shows that mutual diffusions of the three components tend to result in gradient distributions in the fiber vicinity crossing the interphase transition region. The diffusion behavior is extremely restrained by the crosslink reactions. The results indicate that a period of diffusion before the initiation of chemical reaction is necessarily important to obtain sufficient crosslink within the interphase. The sizing amount and the sizing compositions have significant influence on the interphase region. Thicker sizing layer leads to less crosslink and wider transition region, whereas existence of hardener agent in the sizing layer can generate higher crosslink density without changing the width of the interphase. These results deepen our understanding on molecular formation and optimization of the three-dimensional interphase region in carbon fiber/epoxy composites. VC 2013 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2014, 131, 40032.
机译:模拟了上浆剂,环氧树脂和硬化剂之间的分子扩散和交联,以阐明碳纤维/环氧树脂复合材料中相的形成过程,采用了多尺度方法,其中完全原子化的分子动力学(MD),粗粒耗散的颗粒动力学(DPD)和蒙特卡罗样聚合模型结合使用。结果表明,这三种成分的相互扩散往往会导致在穿过相间过渡区的纤维附近产生梯度分布。交联反应极大地限制了扩散行为。结果表明,化学反应开始之前的扩散时间对于在相间获得足够的交联至关重要。上浆量和上浆组成对相间区域具有显着影响。较厚的施胶层导致较少的交联和较宽的过渡区域,而施胶层中固化剂的存在可产生较高的交联密度,而不会改变相间宽度。这些结果加深了我们对碳纤维/环氧树脂复合材料的分子形成和三维相区域优化的理解。 VC 2013 Wiley Periodicals,Inc. J. Appl。 Polym。科学2014,131,40032。

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