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Relation between interfacial shear strength and tensile strength of carbon fiber/resin composite strands

机译:碳纤维/树脂复合丝的界面剪切强度与拉伸强度的关系

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The dependence of the tensile strength of unidirectional carbon fiber/epoxy resin composite strand on the fiber-matrix interfacial shear strength was investigated. The interfacial shear strength was changed by applying different levels of liquid-phase oxidations to the carbon fibers. The tensile strength of the composite strands did not increase monotonically with increasing interfacial shear strength but showed a maximum at a certain level of the interfacial shear strength. The results were interpreted based on a fracture model which took account of accumulation of fiber fractures due to distribution of the fiber strength, stress transfer to the fibers via the interfacial shear stress, and multiple fracture of fibers due to stress concentration. It was shown that the decrease in the tensile strength of the composite strand at a larger interfacial shear strength is caused by the increase in the coefficient of a multiple fracture. The dependences of the multiple fracture on the interfacial shear strength and the matrix modulus were compared.
机译:研究了单向碳纤维/环氧树脂复合材料线材的拉伸强度对纤维-基体界面剪切强度的影响。通过对碳纤维施加不同水平的液相氧化来改变界面剪切强度。复合线材的拉伸强度不会随界面剪切强度的增加而单调增加,而在界面剪切强度的一定水平上会显示最大值。基于断裂模型解释了结果,该模型考虑了由于纤维强度的分布而导致的纤维断裂的累积,通过界面剪切应力传递至纤维的应力以及由于应力集中而引起的多次断裂。结果表明,在较大的界面剪切强度下,复合线材的抗拉强度下降是由多重断裂系数的增加引起的。比较了多次断裂对界面剪切强度和基体模量的依赖性。

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