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Large deformation analysis of fibrous materials using rate constitutive equations

机译:使用速率本构方程对纤维材料进行大变形分析

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Rate constitutive equations (or hypoelastic constitutive equations) are frequently used in finite element software for finite strain analyses. For instance the material user subroutines of softwares such as ABAQUS~R are based on such approaches in the case of large deformations. Among these approaches, most of them use the standard Green Naghdi or Jaumann objective derivatives. The mechanical behaviour at finite strains of fibrous media (fabrics, composite reinforcements, NCF, etc.) is specific because of the possible sliding between fibres. The rate constitutive equations can be used if the fibrous medium is considered as a continuum. In this case, some approaches use the standard Green Naghdi or Jaumann objective derivatives and the associated rotated frame. The constitutive matrix in the rotated frame is obtained from the one in the fibre frame, which is the only frame where the specificities of the fibrous medium are exhibited. An alternative consists in defining and using an objective derivative and a rotated frame from the rotation of the fibre. The aim of this paper is to show that only the second approach leads to satisfying results for some tests and to explain the reasons why this second approach is preferable. This approach is also used to analyse at mesoscopic scale, in-plane shear deformation of a woven unit cell.
机译:速率本构方程(或次弹性本构方程)经常在有限元软件中用于有限应变分析。例如,在大变形的情况下,诸如ABAQUS_R之类的软件的物质用户子例程就是基于这种方法的。在这些方法中,大多数使用标准的Green Naghdi或Jaumann物镜。纤维介质(织物,复合增强材料,NCF等)在有限应变下的机械行为是特定的,因为纤维之间可能会发生滑动。如果将纤维介质视为连续介质,则可以使用速率本构方程。在这种情况下,某些方法使用标准的Green Naghdi或Jaumann物镜导数以及相关的旋转镜架。旋转框架中的本构矩阵是从纤维框架中获得的,这是唯一显示纤维介质特异性的框架。一种替代方案是根据光纤的旋转来定义和使用目标导数和旋转的框架。本文的目的是表明只有第二种方法才能使某些测试获得令人满意的结果,并解释为什么第二种方法更可取的原因。该方法还用于介观尺度分析编织单元的面内剪切变形。

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