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采用微拉曼光谱研究 Kevlar 49 纤维拔出试验的应力传递。

Stress transfer of a Kevlar 49 fiber pullout test studied by micro-Raman spectroscopy.

机构信息

State Key Laboratory of Structural Analysis for Industrial Equipment, Dalian University of Technology, Dalian 116024, China.

出版信息

Appl Spectrosc. 2013 Jun;67(6):600-5. doi: 10.1366/12-06923.

Abstract

The interfacial stress transfer behavior of a Kevlar 49 aramid fiber-epoxy matrix was studied with fiber pullout tests, the fibers of which were stretched by a homemade microloading device. Raman spectra on the embedded fiber were recorded by micro-Raman spectroscopy, under different strain levels. Then, the fiber axial stress was obtained by the relationship between the stress and Raman shift of the aramid fiber. Experimental results revealed that the fiber axial stress increased significantly with the load. The shear stress concentration occurred at the fiber entry to the epoxy resin. Thus, interfacial friction stages exist in the debonded fiber segment, and the interfacial friction shear stress is constant within one stage. The experimental results are consistent with the theoretical model predictions.

摘要

采用纤维拔出试验研究了 Kevlar 49 芳纶纤维-环氧基体的界面应力传递行为,纤维由自制的微加载装置拉伸。通过微拉曼光谱技术,在不同应变水平下,记录嵌入纤维的 Raman 光谱。然后,通过芳纶纤维的应力与 Raman 位移关系,获得纤维轴向应力。实验结果表明,纤维轴向应力随载荷的增加而显著增大。在纤维进入环氧树脂时,发生了剪切应力集中。因此,在脱粘纤维段存在界面摩擦阶段,并且在一个阶段内界面摩擦剪切应力保持恒定。实验结果与理论模型预测一致。

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