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Multiscale hybrid micro-nanocomposites based on carbon nanotubes and carbon fibers

机译:基于碳纳米管和碳纤维的多尺度混合微纳米复合材料

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摘要

Amino-modified double wall carbon nanotube (DWCNT-NH2)/carbon fiber (CF)/epoxy hybrid micro-nanocomposite laminates were prepared by a resin infusion technique. DWCNT-NH2/epoxy nanocomposites and carbon fiber/epoxy microcomposites were made for comparison. Morphological analysis of the hybrid composites was performed using field emission scanning electron microscope. A good dispersion at low loadings of carbon nanotubes (CNTs) in epoxy matrix was achieved by a bath ultrasonication method. Mechanical characterization of the hybrid micro-nanocomposites manufactured by a resin infusion process included three-point bending, mode I interlaminar toughness, dynamic mechanical analysis, and drop-weight impact testing. The addition of small amounts of CNTs (0.025, 0.05, and 0.1 wt%) to epoxy resins for the fabrication of multiscale carbon fiber composites resulted in a maximum enhancement in flexural modulus by 35%, a 5% improvement in flexural strength, a 6% improvement in absorbed impact energy, and 23% decrease in the mode I interlaminar toughness. Hybridization of carbon fiber-reinforced epoxy using CNTs resulted in a reduction in Tg and dampening characteristics, presumably as a result of the presence of micron-sized agglomerates.
机译:通过树脂灌注技术制备了氨基改性的双壁碳纳米管(DWCNT-NH2)/碳纤维(CF)/环氧杂化纳米复合材料。制备了DWCNT-NH2 /环氧纳米复合材料和碳纤维/环氧微复合材料进行比较。使用场发射扫描电子显微镜对杂化复合材料进行形态分析。通过浴超声方法,可以实现低负载量的碳纳米管(CNTs)在环氧基质中的良好分散。通过树脂灌注工艺制造的杂化微纳米复合材料的机械特性包括三点弯曲,I型层间韧性,动态力学分析和落锤冲击测试。向环氧树脂中添加少量的CNT(0.025、0.05和0.1 wt%)以制造多尺度碳纤维复合材料时,弯曲模量最大提高了35%,弯曲强度提高了5%,达到6吸收冲击能量的百分比提高,模式I层间韧性降低23%。使用碳纳米管与碳纤维增强环氧树脂的杂化导致Tg和阻尼特性的降低,这大概是由于存在微米级团聚物的结果。

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