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Predicting hygro-elastic properties of paper sheets based on an idealized model of the underlying fibrous network

机译:基于基础纤维网络的理想模型预测纸张的湿弹性

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Significant dimensional variations may occur in paper-based materials when subjected to changes in moisture content. Moisture induced deformations are governed by the swelling of individual fibres, which is transferred through inter-fibre bonds to the entire fibrous network. Complex interactions between mechanical and hygro-expansive properties take place in the bonding areas, affecting the overall material response. In most network models, the role of these inter-fibre bonds is not explicitly incorporated. This work presents a periodic meso-structural model for the discrete fibrous network, which considers the free-standing fibre segments and inter-fibre bonds. Despite its simplicity, the reference unit-cell enables the incorporation of relevant micro- and meso-structural features such as network structure, fibres and bond geometry and hygro-elastic properties. The proposed model is solved analytically through a proper homogenization strategy, allowing to recover the paper's anisotropic hygro-mechanical response in terms of effective elastic constants and effective hygro-expansive coefficients, exploiting the coupling at the meso-structural level between hygroscopic and mechanical behavior. A comparison with experimental results obtained from the literature shows that the presented approach is quite accurate in predicting the overall paper response, thereby revealing the influence of several meso-scale parameters (e.g. fibre orientation, dimensions, mechanical strength). (C) 2014 Elsevier Ltd. All rights reserved.
机译:当纸张的水分含量发生变化时,尺寸可能会发生明显变化。水分引起的变形受单个纤维的膨胀支配,该膨胀通过纤维间键传递到整个纤维网络。机械性能和吸湿膨胀性能之间的复杂相互作用发生在粘合区域,从而影响整体材料响应。在大多数网络模型中,这些光纤间连接的作用并未明确纳入。这项工作为离散的纤维网络提供了一个周期性的细观结构模型,该模型考虑了独立的纤维段和纤维间的结合。尽管具有简单性,参考单元仍可合并相关的微观和中观结构特征,例如网络结构,纤维和键的几何形状以及吸湿弹性。提出的模型通过适当的均化策略进行解析求解,从而可以利用有效吸水常数和有效吸湿膨胀系数来恢复纸张的各向异性吸湿力学响应,并利用吸湿和机械性能之间的细观结构耦合。与从文献中获得的实验结果的比较表明,所提出的方法在预测总体纸响应方面是非常准确的,从而揭示了几个中尺度参数(例如,纤维取向,尺寸,机械强度)的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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