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Tensile behaviour of nonwoven structures: comparison with experimental results

机译:非织造结构的拉伸行为:与实验结果的比较

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摘要

Nonwoven structures have been recently explored for numerous novel applications ranging from composites to scaffolds. The tensile property of nonwovens is a pre-requisite and indeed, one of the main parameters to determine their performance for such applications. In the first part, a modified micromechanical model describing the tensile behaviour of thermally bonded nonwovens was proposed by incorporating the effect of fibre re-orientation during the deformation (Rawal et al., J Mater Sci 45:2274, 2010). In this study, an attempt has been made to compare the theoretical and experimental stress–strain curves of thermally bonded and spunbonded nonwoven structures. These theoretical findings have been obtained from the most popular analytical tensile models of nonwovens available in the literature in addition to our modified tensile model. Poisson’s ratio has also been determined experimentally in order to predict the stress–strain behaviour of nonwoven, and its relationship with longitudinal strain has clearly distinguished between the randomly and preferentially orientated types of structures. In thermally bonded nonwovens, the tensile strength in various test directions is computed through pull-out stress and a comparison is made with the experimental results.
机译:非织造结构最近已被研究用于从复合材料到脚手架的众多新颖应用。非织造布的拉伸性能是前提,实际上,也是决定其在此类应用中的性能的主要参数之一。在第一部分中,通过结合变形过程中纤维重新取向的影响,提出了一种描述热粘合非织造布拉伸性能的改进的微力学模型(Rawal等,J Mater Sci 45:2274,2010)。在这项研究中,已尝试比较热粘合和纺粘非织造结构的理论和实验应力-应变曲线。这些理论发现是从我们文献中最流行的非织造布分析拉伸模型中获得的,除了我们改进的拉伸模型。泊松比也已通过实验确定,以预测非织造布的应力-应变行为,并且它与纵向应变的关系已清楚地区分了随机和优先定向的结构类型。在热粘合非织造布中,通过拉出应力计算出各个测试方向的拉伸强度,并与实验结果进行了比较。

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