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首页> 外文期刊>International Journal of Solids and Structures >A periodic unit-cell simulation of fiber arrangement dependence on the transverse tensile failure in unidirectional carbon fiber reinforced composites
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A periodic unit-cell simulation of fiber arrangement dependence on the transverse tensile failure in unidirectional carbon fiber reinforced composites

机译:碳纤维单向增强复合材料横向拉伸破坏对纤维排列的周期性单胞模拟

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摘要

The effect of fiber arrangement on transverse tensile failure in unidirectional carbon fiber reinforced composites with a strong fiber-matrix interface was studied using a unit-cell model that includes a continuum damage mechanics model. The simulated results indicated that tensile strength is lower when neighboring fibers are arrayed parallel to the loading direction than with other fiber arrangements. A shear band occurs between neighboring fibers, and the damage in the matrix propagates around the shear band when the interfacial normal stress (INS) is sufficiently high. Moreover, based on the observation of Hobbiebrunken et al.; we reproduced the damage process in actual composites with a nonuniform fiber arrangement. The simulated results clarified that the region where neighboring fibers are arrayed parallel to the loading direction becomes the origin of the transverse failure in the composites. The cracking sites observed in the simulation are consistent with experimental results. Therefore, the matrix damage in the region where the fiber is arrayed parallel to the loading direction is a key factor in understanding transverse failure in unidirectional carbon fiber reinforced composites with a strong fiber/matrix interface.
机译:使用包含连续损伤力学模型的单元模型研究了纤维排列对具有强纤维-基体界面的单向碳纤维增强复合材料的横向拉伸破坏的影响。模拟结果表明,当相邻纤维平行于加载方向排列时,抗拉强度比其他纤维排列低。相邻纤维之间会出现剪切带,并且当界面法向应力(INS)足够高时,基体中的损伤会在剪切带附近传播。此外,根据Hobbiebrunken等人的观察;我们在纤维排列不均的实际复合材料中再现了损伤过程。模拟结果表明,相邻纤维平行于加载方向排列的区域成为复合材料中横向破坏的起点。模拟中观察到的裂纹点与实验结果一致。因此,在平行于加载方向排列纤维的区域中的基质损伤是理解具有强纤维/基质界面的单向碳纤维增强复合材料的横向破坏的关键因素。

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