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Fracture mechanisms and failure analysis of carbon fibre/toughened epoxy composites subjected to compressive loading

机译:碳纤维/增韧环氧复合材料承受压缩载荷的断裂机理及破坏分析

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This study investigates the failure mechanisms of unidirectional (UD) HTS40/977-2 toughened resin composites subjected to longitudinal compressive loading. A possible sequence of failure initiation and propagation was proposed based on SEM and optical microscopy observations of failed specimens. The micrographs revealed that the misaligned fibres failed in two points upon reaching maximum micro-bending deformation and two planes of fracture were created to form a kink band. Therefore, fibre micro-buckling and fibre kinking models were implemented to predict the compressive strength of UD HTS40/977-2 composite laminate. The analysis identified several parameters that were responsible for the microbuckling and kinking failure mechanisms. The effects of these parameters on the compressive strength of the UD HTS40/977-2 composite systems were discussed. The predicted compressive strength using a newly developed combined modes model showed a very good agreement to the measured value.
机译:这项研究调查了单向(UD)HTS40 / 977-2增韧树脂复合材料在纵向压缩载荷下的破坏机理。根据扫描电镜和故障标本的光学显微镜观察结果,提出了可能的故障萌生和传播顺序。显微照片显示,未对准的纤维在达到最大微弯曲变形时在两点上破裂,并且产生了两个断裂平面以形成扭结带。因此,采用纤维微屈曲和纤维扭结模型来预测UD HTS40 / 977-2复合层压板的抗压强度。分析确定了造成微屈曲和扭结失效机理的几个参数。讨论了这些参数对UD HTS40 / 977-2复合系统抗压强度的影响。使用新开发的组合模式模型预测的抗压强度与测量值显示出非常好的一致性。

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