首页> 外文会议>International Workshop on Computational Structural Dynamics; Feb 22-24, 2001; Iziis, Skopje, Republic of Macedonia >Meso―macro modelling of fibre-reinforced composites exhibiting elastoplastic material behaviour
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Meso―macro modelling of fibre-reinforced composites exhibiting elastoplastic material behaviour

机译:具有弹塑性材料性能的纤维增强复合材料的细观宏模型

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Many composites consist of a fabric structure embedded in a matrix material. In the case of pneumatic membranes, the fibres are polyester threads which show noticeable plastic deformation. The stiffness of the fibres determines the overall stiffness of the material. The correct modelling of the orthotropy of the composite is therefore very important. In addition, the structure experiences large deformations which must be accounted for. Suitable models for this type of materials are therefore derived in the framework of finite anisotropic plasticity. A main problem is, however, the lack of experimental data in the literature. For this reason, a computer model of the composite is set up for numerical experiments. In this way, sufficient data can be generated. The present continuum mechanical model based on these "artificial" test data can be efficiently implemented into a finite element formulation. Using a special integration algorithm, the non-linear equation system consisting initially often equations reduces to two non-linear scalar equations.
机译:许多复合材料由嵌入基质材料中的织物结构组成。对于气动膜,纤维是聚酯线,表现出明显的塑性变形。纤维的硬度决定了材料的整体硬度。因此,正确地模拟复合材料的正交各向异性非常重要。另外,该结构经历较大的变形,这必须予以考虑。因此,在有限的各向异性可塑性范围内得出了适用于此类材料的模型。然而,主要问题是文献中缺乏实验数据。因此,为数值实验建立了复合材料的计算机模型。这样,可以生成足够的数据。基于这些“人工”测试数据的当前连续力学模型可以有效地实现为有限元公式。使用特殊的积分算法,最初通常由方程组成的非线性方程系统可简化为两个非线性标量方程。

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