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Decoupling the bending behavior and the membrane properties of finite shell elements for a correct description of the mechanical behavior of textiles with a laminate formulation

机译:解耦有限壳单元的弯曲行为和膜特性,以正确描述具有层压配方的纺织品的机械行为

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摘要

Drape simulation of textiles is a field of research, which is known in the clothing sector for a long time. The ongoing development of high-performance composites made of textile reinforcements and matrix materials focus the interests on a serial production in many industrial sectors, such as aviation and automotive industries. Challenges occur mainly in the serial production technologies and in supplying concepts for the preform architecture and shape. Research aims on the acceleration of preform manufacturing and the reduction of expensive pretests. Numerical simulation models can help to improve the composite development chain with structure and process simulation. A special challenge in drape modeling is the bending behavior of textiles. This study introduces a novel approach for modeling single textile layers as laminates to gain a correct mechanical behavior, where all deformation mechanisms are uncoupled. The implementation in the finite element software LS-DYNA~® is described. An algorithm is introduced which provides the membrane stiffness for each layer of a laminate to fit the measured cantilever bending stiffness of textiles in every bending direction and bending side. The calculated parameters for the laminate formulation result in the requested bending stiffness for the textile layer. The cantilever bending stiffness can be used directly for dimensioning the model.
机译:纺织品的悬垂仿真是一个研究领域,在服装领域已久。由纺织品增强材料和基体材料制成的高性能复合材料的不断开发,使人们的兴趣集中在许多工业部门的批量生产中,例如航空和汽车工业。挑战主要出现在批量生产技术以及瓶坯结构和形状的供应概念中。研究旨在加速瓶坯制造和减少昂贵的预测试。数值模拟模型可以通过结构和过程模拟帮助改善复合材料开发链。悬垂模型中的一个特殊挑战是纺织品的弯曲行为。这项研究引入了一种新颖的方法,该方法可以将单个纺织品层建模为层压板,以获得正确的机械性能,其中所有变形机制都没有耦合。描述了在有限元软件LS-DYNA中的实现。引入了一种算法,该算法为层压板的每一层提供膜的刚度,以适合在每个弯曲方向和弯曲侧上测量的纺织品悬臂弯曲刚度。层压制品配方的计算参数导致织物层具有所需的弯曲刚度。悬臂的弯曲刚度可直接用于模型尺寸。

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