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3D layer-to-layer orthogonal interlock woven composites under monotonic loading: Multiscale modeling

机译:单调载荷下的3D层间正交互锁编织复合材料:多尺度建模

摘要

Multiscale modeling of 3D layer-to-layer orthogonal interlock woven composite structure for elastic and strength behavior is presented. Due to the inherent nature of weaving, 3D woven composites can be represented by repetitive unit cells at the meso level. The present study focuses on identifying different types of repetitive unit cells considering both the geometry and the boundary conditions. For a typical 3D layer-to-layer orthogonal interlock woven composite, there are eight types of meso repetitive unit cells taking into account both the geometry and the boundary conditions. Additionally, for a practical situation, fiber volume fraction (V-f) in the impregnated strand is not uniform throughout the cross-section. In other words, V-f would be different for different micro repetitive unit cells. The properties of the macro structure, i.e. the 3D woven composite structure has been determined by applying periodic boundary conditions at micro and meso levels and iso-strain conditions at the macro level using finite element analysis. The continuity between the blocks is provided by merging the nodes in the intersection regions. The effect of different V-f at different locations in the transverse cross-section of the strand on the elastic and the strength properties of 3D layer-to-layer woven composite structure is presented.
机译:提出了3D层到层正交互锁编织复合结构的弹性和强度行为的多尺度建模。由于编织的固有性质,因此3D编织复合材料可以用细观水平的重复单元表示。本研究着重于在考虑几何形状和边界条件的情况下确定不同类型的重复晶胞。对于典型的3D层到层正交互锁编织复合材料,考虑到几何形状和边界条件,有八种类型的介观重复单元。另外,对于实际情况,在整个横截面中,浸渍的股中的纤维体积分数(V-f)不是均匀的。换句话说,对于不同的微重复单位晶胞,V-f将不同。宏观结构(即3D编织复合结构)的属性是通过使用有限元分析在微观和中观水平应用周期性边界条件以及在宏观水平应用等应变条件来确定的。通过合并相交区域中的节点来提供块之间的连续性。提出了在绞线横截面的不同位置处不同的V-f对3D层间编织复合结构的弹性和强度特性的影响。

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