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Micromechanics of a Planar Hybrid Fibrous Network

机译:平面混合纤维网络的微力学

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摘要

A micromechanical approach is proposed in this work to predict the initial tensile response under uniaxial loading of a bonded two-dimensional fibrous network consisting of two kinds of fibers. The probabilities and statistical distributions of the hybrid bonding points and free fiber lengths between the bonding points in the structure are first derived, and the deformations of both the fiber segment and the bonding area of a typical microelement of the network are analyzed and calculated. The analysis of an arbitrary microelement is then extended statistically to an intermediate level of the structure, the mesodomain, through which the macroscopic deformations of the structure are computed. Ultimately, the general expressions of elastic moduli and Poisson's ratios for a hybrid fibrous network are obtained. A parametric study examines the relationships between fiber mechanical and dimensional properties, fiber volume fractions of the two fiber types, fiber orientation distributions and the properties of the bonding areas, and the tensile behavior of the structure for an ideal planar fiber network.
机译:在这项工作中提出了一种微机械方法来预测由两种纤维组成的二维纤维网络的单轴载荷下的初始拉伸响应。首先推导混合键合点的概率和统计分布,以及结构中键合点之间的自由纤维长度,然后分析和计算网络中典型微单元的纤维段和键合面的变形。然后,对任意微量元素的分析在统计上扩展到结构的中间层,介观域,通过该中间层计算结构的宏观变形。最终,获得了混合纤维网络的弹性模量和泊松比的一般表达式。参数研究检查了纤维力学和尺寸特性,两种纤维类型的纤维体积分数,纤维取向分布和粘合区域的特性之间的关系,以及理想平面纤维网络的结构的拉伸性能。

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