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Fracture toughness of the tensile and compressive fibre failure modes in laminated composites

机译:层压复合材料中拉伸和压缩纤维破坏模式的断裂韧性

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The fracture toughnesses associated with fibre tensile failure and compressive fibre kinking in a T300 913 carbon-epoxy laminated composite are measured using compact tension and 'compact compression' tests respectively. The specimen strain fields were monitored using a digital speckle photogrammetry system during the tests. The damage present in the specimens after the tests was investigated using C-scan and optical and scanning electron microscopy. The initiation and propagation values of the tensile fibre failure critical energy release rate were determined as 91.6 kJ/m~2 and 133 kJ/m~2 respectively. For fibre compressive kinking, an initiation value of 79.9 kJ/m~2 was obtained, but no meaningful propagation values could be determined. In both cases, the test results showed low scatter.
机译:在T300 913碳-环氧层压复合材料中,与纤维拉伸断裂和压缩纤维扭结相关的断裂韧性分别使用紧凑拉伸和“压缩压缩”测试进行测量。在测试过程中,使用数字散斑摄影测量系统监控样品应变场。使用C扫描,光学和扫描电子显微镜对试样在测试后存在的损伤进行了研究。拉伸纤维破坏临界能量释放速率的起始值和传播值分别确定为91.6 kJ / m〜2和133 kJ / m〜2。对于纤维压缩弯折,获得的起始值为79.9 kJ / m〜2,但无法确定有意义的传播值。在这两种情况下,测试结果均显示出较低的分散性。

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