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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Molecular modelling of interactions at the composite interface between surface-treated carbon fibre and polymer matrices: the influence of surface functional groups
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Molecular modelling of interactions at the composite interface between surface-treated carbon fibre and polymer matrices: the influence of surface functional groups

机译:表面处理的碳纤维与聚合物基体之间复合界面相互作用的分子模型:表面官能团的影响

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To simulate the results of surface treatments, commonly encountered functional groups were introduced onto the surface of the carbon fibre model. The carbon fibre model used in this study is based on the single layer diagonal graphitic plane, comprising 52 six-membered rings, in a 4 x 13 configuration, and of 150 carbon atoms. Surface treatment was represented by the introduction of functional groups (-R): each time, a C-C bond was broken along the edge of the plane, and a pair of -R groups was added to the graphitic plane. The total number of functional groups (n) was six. The effect of these functional groups on the non-covalent bonding interactions at the composite interface between carbon fibre and epoxy resin was investigated using a previously established BLENDS method. The compatibility of the resin and fibre in this model, indicated by the interaction parameter chi(T), was dependent upon two factors: steric bulk and electrostatic interactions. The halogen substituents show a decrease in chi(T), as one descends the group. Maximum interaction tends to be a function of steric bulk and polarizability in this group. The alkyl (CnH2n+1) and phenyl substituents also show a decreasing trend chi(T) with increasing size, although the interaction parameter with methyl is anomalously low in all cases. [References: 32]
机译:为了模拟表面处理的结果,将常见的官能团引入了碳纤维模型的表面。本研究中使用的碳纤维模型基于单层对角石墨平面,该平面包含52个六元环,呈4 x 13构型,具有150个碳原子。通过引入官能团(-R)来表示表面处理:每次沿平面边缘断开C-C键,并将一对-R基团添加到石墨平面上。官能团的总数(n)为六个。使用先前建立的BLENDS方法研究了这些官能团对碳纤维与环氧树脂之间的复合界面上非共价键相互作用的影响。该模型中树脂和纤维的相容性由相互作用参数chi(T)表示,取决于两个因素:空间体积和静电相互作用。卤素取代基随着基团的下降而显示出chi(T)的降低。在该组中,最大相互作用往往是空间体积和极化率的函数。烷基(CnH2n + 1)和苯基取代基也显示出随尺寸增加而降低的趋势chi(T),尽管在所有情况下与甲基的相互作用参数异常低。 [参考:32]

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