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首页> 外文期刊>Nordic Pulp & Paper Research Journal >A strategy for prediction of the elastic properties of epoxy-cellulose nanocrystal-reinforced fiber networks
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A strategy for prediction of the elastic properties of epoxy-cellulose nanocrystal-reinforced fiber networks

机译:预测环氧纤维素纳米晶体增强纤维网络弹性性能的策略

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摘要

The reinforcement potential of cellulose nanocrystal (CNC) additions on an idealized 2-dirmensional (2-D) fiber network structure consisting of micron sized fiber elements was investigated. The reinforcement mechanism considered in this study was through the stiffening of the micron sized fiber elements via a CNC-epoxy coating. A hierarchical analytical modeling approach was used to estimate the elastic properties spanning three different structural features; ⅰ) micromechanics for CNC-epoxy properties, ⅱ) laminate theory for fiber elements coated with CNC-epoxy, and ⅲ) a 2-D network model for an assembly of interconnected fiber elements. The extent to which CNC-epoxy coating can stiffen a fiber element was dependent on the CNC volume fraction, CNC-epoxy layer thickness, CNC alignment, CNC aspect ratio, and the original stiffness of the fiber element. Calculations suggest there is a potential for CNC additions to stiffen network structures, the extent to which is strongly depending on the initial fiber element stiffness. Incorporation of limited experimental observations into the model and fiber element properties typical of fibers used in paper products, however, suggests that the enhancement of CNCs on a wood fiber element and thus on the network structure, may be limited.
机译:研究了由微米级纤维元素组成的理想化二维(2-D)纤维网络结构上纤维素纳米晶体(CNC)的增强潜力。在这项研究中考虑的增强机制是通过CNC环氧树脂涂层使微米级纤维元件变硬。使用层次分析建模方法来估计跨越三个不同结构特征的弹性特性。 ⅰ)具有CNC环氧树脂特性的微力学,ⅱ)涂覆有CNC环氧树脂的纤维元件的层压理论,以及ⅲ)互连纤维元件组装的二维网络模型。 CNC环氧树脂涂层可以使纤维元件变硬的程度取决于CNC体积分数,CNC环氧树脂层的厚度,CNC排列,CNC长宽比和纤维元件的原始刚度。计算表明,添加CNC可能会增强网络结构,其程度在很大程度上取决于初始纤维元件的刚度。然而,将有限的实验观察结果纳入纸制品所用纤维的模型和典型纤维元素特性中,表明在木质纤维元素上以及网络结构上CNC的增强可能受到限制。

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