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Influence of carbon fiber’s surface state on interlaminar shear properties of CFRP laminate

机译:碳纤维的表面状态对CFRP层压板层间剪切性能的影响

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In order to investigate the influence of carbon fiber’s surface state on the interlaminar shear properties of carbon fiber-reinforced plastic (CFRP) laminate, the carbon fiber’s surface state was modified by thermal treatment at elevated temperatures. The interlaminar shear strength (ILSS) of CFRP laminates reinforced with treated fibers was measured by means of short-beam shear test, and the surface state of fiber was characterized by Electron Spectroscopy for Chemical Analysis (ESCA) analysis to reveal the dominate factor for controlling the ILSS. Combining the ILSS measurement with the ESCA analysis, the results indicated that: (1) the ILSS is strongly dependent on the oxygen-containing functional groups on the surface of carbon fiber; (2) the fiber treated at 600 °C has the highest oxygen-containing functional groups that lead to the highest ILSS of CFRP; and (3) at temperatures beyond 600 °C, the oxygen-containing functional groups decrease with increasing the heat treatment temperature, resulting in a low ILSS of CFRP laminates. Furthermore, from the microstructure observation, it was found that the CFRP mainly failed in the mode of multi-interlaminar shear. The multi-interlaminar shear failure in the CFRP laminates with low ILSS is more severe due to a weak fiber-matrix interface.
机译:为了研究碳纤维的表面状态对碳纤维增强塑料(CFRP)层压板的层间剪切性能的影响,对碳纤维的表面状态进行了高温热处理。通过短光束剪切试验测量了处理过的纤维增强后的CFRP层压板的层间剪切强度(ILSS),并通过化学分析电子能谱(ESCA)对纤维的表面状态进行了表征,以揭示控制的主要因素ILSS。将ILSS测量与ESCA分析相结合,结果表明:(1)ILSS强烈依赖于碳纤维表面的含氧官能团。 (2)在600°C处理的纤维具有最高的含氧官能团,从而导致CFRP的ILSS最高; (3)在超过600℃的温度下,含氧官能团随着热处理温度的升高而降低,导致CFRP层压板的ILSS低。此外,从显微组织观察发现,CFRP主要在多层间剪切模式下失效。低ILSS的CFRP层压板的多层间剪切破坏由于纤维-基质界面较弱而更加严重。

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