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Dynamic Tensile Properties Of Carbon Fiber Composite Based On Thermoplastic Epoxy Resin Loaded In Matrix-dominant Directions

机译:沿基体主导方向加载热塑性环氧树脂的碳纤维复合材料的动态拉伸性能

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摘要

The dynamic tensile properties of carbon fiber (CF) composite loaded in the matrix-dominant direction are experimentally determined. In this study, thermoplastic epoxy resin is used as a matrix of the CF composite. A dynamic tensile test is performed using a tension-type split Hopkinson bar technique. The experimental results show that there are not linear relationships between tensile strength and strain rate in case of the 10°, 30° and 45° specimens, although the tensile strength of CF composite, whose matrix is typical thermosetting epoxy resin, linearly increases with the strain rate for all fiber orientation angles. From the fracture surface observation, it is found that the ductile fracture of the matrix can be observed only when 10° off-axis specimen is tested under dynamic loading condition. It is inferred that the softening of the thermoplastic epoxy resin in the vicinity of interface area takes place with increasing strain rate.
机译:实验确定了碳纤维(CF)复合材料在基体主导方向上的动态拉伸性能。在这项研究中,热塑性环氧树脂被用作CF复合材料的基质。动态拉伸试验是使用张力型霍普金森棒技术进行的。实验结果表明,在10°,30°和45°的样品中,拉伸强度与应变率之间没有线性关系,尽管基体为典型的热固性环氧树脂的CF复合材料的拉伸强度随温度的增加而线性增加。所有纤维取向角的应变率。从断裂表面观察发现,仅当在动态载荷条件下测试10°离轴试样时,才能观察到基体的延性断裂。可以推断,随着应变速率的增加,界面区域附近的热塑性环氧树脂发生软化。

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