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The elasto-plastic behaviour of three-dimensional stochastic fibre networks with cross-linkers

机译:带有交联剂的三维随机纤维网络的弹塑性行为

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Fibre network materials constitute a class of highly porous materials with low density, promising for functional and structural applications; however, very limited research has been conducted, especially on simulation and analytical models. In this paper, a continuum mechanics-based three-dimensional periodic beam-network model has been constructed to describe the stochastic fibre network materials. In this model, the density of the cross-linkers is directly related to the relative density of the fibre network materials, and the cross-linkers are represented by equivalent beam elements. The objective of this work was to delineate the elasto-plastic behaviour of the stochastic fibre network materials. Characteristic stress and strain derived from the total strain energy density have been adopted to reveal the yielding behaviour of the fibre networks. The results indicate that the stochastic fibre network materials are transversely isotropic. The in-plane stiffness and strength are much larger than those in the out-of-plane direction. For the fibre network materials with a small relative density, the relationship between the uniaxial yield strength and the relative density is a quadratic function in the x direction and is a cubic function in the z direction, which agree well with our dimensional analysis and are consistent with the relevant experimental results in literature. The yield surface depends strongly on the relative density and the connection between fibres.
机译:纤维网材料构成了一类低密度的高孔隙率材料,有望用于功能和结构应用;但是,已经进行了非常有限的研究,特别是在模拟和分析模型方面。本文建立了一种基于连续力学的三维周期性梁网络模型来描述随机纤维网络的材料。在此模型中,交联剂的密度与纤维网络材料的相对密度直接相关,并且交联剂由等效的梁单元表示。这项工作的目的是描述随机纤维网络材料的弹塑性行为。从总应变能密度得出的特征应力和应变已被用来揭示纤维网络的屈服行为。结果表明,随机纤维网络材料是横向各向同性的。平面内的刚度和强度比平面外的方向要大得多。对于相对密度较小的纤维网材料,单轴屈服强度与相对密度之间的关系在x方向上是二次函数,在z方向上是三次函数,这与我们的尺寸分析非常吻合并且是一致的在文献中有相关的实验结果。屈服面在很大程度上取决于相对密度和纤维之间的连接。

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