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Effect of the meso-structure on the strain concentration of carbon-carbon composites with drilling hole

机译:细观结构对带孔碳碳复合材料应变浓度的影响

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In this work, the influence of fiber/matrix meso-structure on the strain concentration of three-dimensional (3D) reinforced carbon-carbon composites with a drilling hole is discussed by experimental and numerical ways. The full-field digital image correlation (DIC) method is adopted to obtain the strain field of the experimental specimens, and the meso-FEM model with the consistent meso-structure of the experimental specimens is established to reveal the main deformation and damage mechanism. The results show that the strain concentration appeared off the location of ±90° hole tips, which is different with homogeneous material. Furthermore, the shear bands are observed and located on the region between the cut fiber yarn and the adjacent uncut one. The peculiarities are found connecting with the meso-structure. Moreover, the damage locations obtained from the meso-model show good agreements with the experimental fracture path, thereby, the analyses are verified.
机译:在这项工作中,通过实验和数值方法讨论了纤维/基体细观结构对带有钻孔的三维(3D)增强碳-碳复合材料的应变浓度的影响。采用全场数字图像相关(DIC)方法获得了试样的应变场,建立了具有一致的细观结构的细观有限元模型,揭示了其主要变形和损伤机理。结果表明,应变集中出现在±90°孔尖端的位置,这与均质材料不同。此外,观察到剪切带,该剪切带位于切割的纤维纱与相邻的未切割的纱之间的区域上。发现这些特性与介观结构有关。此外,从细观模型获得的损伤位置与实验断裂路径显示出良好的一致性,从而验证了分析结果。

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