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A DIC-based study of in-plane mechanical response and fracture of orthotropic carbon fiber reinforced composite

机译:基于DIC的正交异性碳纤维增强复合材料面内力学响应和断裂研究

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The in-plane elastic properties and quasi-static fracture response of an orthotropically woven carbon fiber reinforced composite are investigated using 3D digital image correlation. The elastic properties are determined as a function of fiber orientation, and the effect of fiber angles on the crack extension direction is investigated. The modified maximum hoop stress criterion is used to predict the crack extension angle of the examined material. The predicted angles are in very good agreement with those found experimentally. Optical observations and local strain data from the quasi-static fracture studies reveal that crack initiation occurs well before the maximum far-field load is reached.
机译:使用3D数字图像相关性研究了正交各向异性编织碳纤维增强复合材料的面内弹性特性和准静态断裂响应。确定弹性性能作为纤维取向的函数,并研究纤维角度对裂纹扩展方向的影响。修改后的最大环向应力准则用于预测所检查材料的裂纹扩展角。预测的角度与实验找到的角度非常吻合。准静态断裂研究的光学观测和局部应变数据表明,裂纹萌生早于达到最大远场载荷之前发生。

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