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首页> 外文期刊>The Journal of the Textile Institute >Geometrical modeling of yarn's cross-section towards a realistic unit cell of 2D and 3D woven composites
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Geometrical modeling of yarn's cross-section towards a realistic unit cell of 2D and 3D woven composites

机译:纱线横截面朝向2D和3D编织复合材料逼真单元电池的几何建模

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摘要

Due to the complex microstructure of textile composites, the modeling of physical properties is challenging. The mechanical properties of textiles depend on different geometrical parameters such as the yarn's geometrical properties, undulation, geometrical cross-section, gap between two adjacent yarns, and other parameters. In this paper, a geometrical modeling of 2D and 3D woven composites is presented. The novelty of this paper is related to a more realistic modeling of yarn's cross-section. The presented modeling technique takes into account that yarns constituting 2D or 3D woven composite do not have the same cross-section shape and undulated part as usually considered with an ideal unit cell modeling. The proposed technique leads to calculate the fiber volume fraction of yarns, then the fiber volume fraction of the unit cell of the studied composite. It was applied to different kinds of woven composites where the modeled unit cell converged to a more realistic shape.
机译:由于纺织复合材料的复杂微观结构,物理性质的建模是具有挑战性的。纺织品的机械性能取决于不同的几何参数,例如纱线的几何特性,波状,几何横截面,两个相邻纱线之间的间隙和其他参数。在本文中,提出了2D和3D编织复合材料的几何模拟。本文的新颖性与纱线横截面的更现实的建模有关。所呈现的建模技术考虑到构成2D或3D编织复合材料的纱线不具有与理想单元电池建模通常所考虑的相同的横截面形状和波状部分。所提出的技术导致计算纱线的纤维体积分数,然后是所研究的复合材料的单元电池的纤维体积分数。它应用于不同种类的编织复合材料,其中建模单元电池融合到更现实的形状。

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