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Influence of Elevated Temperature Treatment on the Microstructures and Mechanical Properties of Carbon Fibers in Argon Environment

机译:高温处理对氩环境中碳纤维微观结构和力学性能的影响

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摘要

The elevated temperature resistance and fire resistance of carbon fiber-reinforced polymer (CFRP) composites are a critical concern for many applications. The mechanical properties of carbon fiber at elevated temperatures play a crucial role on the mechanical property of CFRP. In many cases, carbon fiber may not directly exposed to air due to the coverage of resin matrix or coatings at elevated temperatures. In the present paper, exposure at 400-700 degrees C for 30 min, or at 500 degrees C for 30 min similar to 10 h in argon was simulated in the above case for carbon fibers. The evolution of chemical structural and mechanical properties of carbon fibers at elevated temperatures was investigated. It was found that the tensile strength of the carbon fibers was reduced remarkably, and the tensile modulus was not sensitive to the elevated temperature exposure. Decrease in the shape parameter of carbon fiber after exposure indicated the increase in defects and disordering. Furthermore, elevated temperature exposure does not significantly change the fiber mass, C-C skeleton and graphite crystallite size. However, the micropore size and graphite interlayer spacing increased obviously, leading to the weakened lateral cross-linking between the graphite layers. Finally, the evolution of the tensile strength with the exposed temperatures and time was discussed quantitatively. The contribution factors of van der Waals and amorphous carbon on the tensile strength were found to be 75 and 25%, respectively.
机译:碳纤维增强聚合物(CFRP)复合材料的耐高温和耐火性是许多应用的关键问题。升高温度下碳纤维的力学性能起对CFRP的力学性质的关键作用。在许多情况下,由于在升高的温度下的树脂基质或涂层的覆盖,碳纤维可能不会暴露于空气。在本文中,在上述碳纤维的情况下,模拟在上述碳纤维的上述情况下模拟在400-700℃下曝光30分钟,或者在500℃下以500℃。研究了升高温度下碳纤维的化学结构和力学性能的演变。结果发现,碳纤维的拉伸强度显着降低,拉伸模量对升高的温度暴露不敏感。曝光后碳纤维形状参数的降低表明缺陷和失调的增加。此外,升高的温度暴露不会显着改变纤维物质,C-C骨架和石墨晶状体尺寸。然而,微孔尺寸和石墨层间距显着增加,导致石墨层之间的横向交联。最后,定量讨论了具有暴露温度和时间的拉伸强度的演变。发现van der Waals和无定形碳的贡献因子分别为75%和25%。

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