A solid-beam approach for mesoscopic analysis of textile reinforcements forming simulation

Baptiste Lacroix
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Abstract

Abstract. Draping and forming of textile reinforcements are usually performed thanks to finite element models with continuous media assumption. The specific purpose of mesoscale model is to faithfully reproduces defects like yarn buckling or gapping during the process. Such defects are crucial outputs because they have huge impacts on mechanical and permeability properties of the whole textile. However, mesoscopic analysis usually leads to expensive computation cost and needs to be optimized to propose a cost-effective response to this problem. Thus, this document aims to develop a solid-beam approach for mesoscale model, with coarse geometric assumption but with finite element and constitutive law formulation taking into account the fibrous aspect of the fabric.
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用于纺织品加固成型模拟介观分析的固体梁方法
摘要纺织加固材料的悬垂和成型通常是通过假定为连续介质的有限元模型来实现的。中尺度模型的具体目的是忠实再现加工过程中的纱线弯曲或间隙等缺陷。这些缺陷对整个纺织品的机械性能和透气性能有巨大影响,因此是至关重要的输出结果。然而,中观分析通常会导致昂贵的计算成本,因此需要对其进行优化,以提出具有成本效益的解决方案。因此,本文旨在开发一种用于中尺度模型的实体梁方法,该方法采用粗几何假设,但在有限元和构成法则表述时考虑到了织物的纤维方面。
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