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Numerical modelling of damage initiation in low-density thermally bonded nonwovens

机译:低密度热粘合非织造布破坏引发的数值模型

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Due to random orientation of fibres and presence of voids in their microstructure, low-density thermally bonded polymer-based nonwovens demonstrate complex processes of deformation and damage initiation and evolution. This paper aims to introduce a micro-scale discontinuous finite element model to simulate an onset of damage in low-density nonwovens. In the model, structural randomness of a nonwoven fabric was introduced in terms of orientation distribution function (ODF) obtained by an algorithm based on the Hough Transform. Fibres were represented in the model with truss elements with orientations defined according to the computed ODF. Another structural element of nonwovens - bond points - were modelled with shell elements having isotropic mechanical properties. The numerical scheme employed direct modelling of fibres at micro level, naturally introducing the presence of voids into the model and thus making it suitable for simulations of low-density nonwovens. The obtained results of FE simulations were compared with our data of tensile tests performed in principal directions until the onset of damage in the specimens.
机译:由于纤维的随机取向和在其微观结构中存在空隙,低密度热粘合聚合物基非织造布表现出复杂的变形,损伤引发和演变过程。本文旨在介绍一个微观尺度的不连续有限元模型,以模拟低密度非织造材料的破坏开始。在该模型中,根据通过霍夫变换的算法获得的取向分布函数(ODF),介绍了无纺布的结构随机性。纤维在模型中用根据计算的ODF定义的方向的桁架元素表示。用具有各向同性机械性能的壳单元对非织造材料的另一个结构元素-粘合点-进行建模。数值方案采用直接对纤维进行微观建模,自然将空洞的存在引入模型中,从而使其适合于低密度非织造布的仿真。有限元模拟的获得结果与我们在主要方向上进行的拉伸试验数据进行比较,直到试样开始损坏为止。

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