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首页> 外文期刊>Journal of Composite Materials >Quantitative analysis of fatigue cracks in laminated carbon fibre-reinforced polymer composites using micro-computed tomography
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Quantitative analysis of fatigue cracks in laminated carbon fibre-reinforced polymer composites using micro-computed tomography

机译:显微计算机断层扫描技术定量分析碳纤维复合材料层压板中的疲劳裂纹

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A phenomenological study was carried out on laminated carbon fibre-reinforced polymer composites subjected to constant amplitude fatigue loading. Visualization of damage progression was performed using a high-resolution Skyscan micro-computed tomography unit which provided detailed information on propagation of initially occurring cracks throughout fatigue life at specific intervals. Quantitative analysis of image sequences of virtual cross-sections throughout the three orthogonal planes of the sample resulted in defining fatigue crack growth rates, da/dn for each plane, which was interpreted in terms of the three damage modes: opening (mode I), in-plane shear (mode II) and out-of-plane shear (mode III). By applying linear elastic fracture mechanics laws, strain energy release rates were calculated and then used in a cohesive zone model formulation to define model parameters. Considering a bi-linear triangular cohesive zone model curve, maximum traction and maximum separation were calculated for each of the three damage modes, differentiating between modes II and III in a novel manner.
机译:对承受恒定振幅疲劳载荷的层压碳纤维增强聚合物复合材料进行了现象学研究。使用高分辨率的Skyscan微计算机断层扫描装置进行损伤进展的可视化,该装置可提供有关在特定间隔内整个疲劳寿命中最初出现的裂纹扩展的详细信息。对样品三个正交平面中虚拟横截面的图像序列进行定量分析,确定了每个平面的疲劳裂纹扩展率da / dn,可根据以下三种损坏模式进行解释:开口(模式I),面内剪切(模式II)和面外剪切(模式III)。通过应用线性弹性断裂力学定律,计算应变能释放速率,然后将其用于内聚区模型公式化以定义模型参数。考虑到双线性三角内聚区模型曲线,针对三种破坏模式中的每一种计算了最大牵引力和最大分离,以新颖的方式区分了模式II和III。

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