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首页> 外文期刊>Journal of Applied Polymer Science >Mechanical and thermal transmission properties of carbon nanofiber-dispersed carbon/phenolic multiscale composites
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Mechanical and thermal transmission properties of carbon nanofiber-dispersed carbon/phenolic multiscale composites

机译:碳纳米纤维分散的碳/酚醛多尺度复合材料的机械和热传递性能

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摘要

The present article reports the development and characterization of carbon nanofiber (CNF)-incorporated carbon/phenolic multiscale composites. Vapor-grown CNFs were dispersed homogeneously in to phenolic resin using an effective dispersion route, and carbon fabrics were subsequently impregnated with the CNF-dispersed resin to develop carbon fiber/CNF/phenolic resin multiscale composites. Mechanical and thermal transmission properties of multiscale composites were characterized. Elastic modulus and thermal conductivity of neat carbon/phenolic and multiscale composites were predicted and compared with the experimental results. It was observed that incorporation of only 1.5 wt % CNF resulted in 10% improvement in Young's modulus, 12% increase in tensile strength, and 36% increase in thermal conductivity of carbon/phenolic composites. Fracture surface of composite samples revealed the formation of stronger fiber/matrix interface in case of multiscale composites than neat carbon/phenolic composites. Enhancement of above properties through CNF addition has been explained, and the difference between the predicted values and experimental results has been discussed.
机译:本文报道了碳纳米纤维(CNF)结合的碳/酚多尺度复合材料的开发和表征。使用有效的分散途径将气相生长的CNF均匀地分散到酚醛树脂中,然后用CNF分散的树脂浸渍碳纤维织物,以开发碳纤维/ CNF /酚醛树脂多尺度复合材料。表征了多尺度复合材料的机械和热传递性能。预测了纯碳/酚醛和多尺度复合材料的弹性模量和热导率,并将其与实验结果进行了比较。观察到,仅引入1.5wt%的CNF导致碳/酚类复合材料的杨氏模量提高10%,抗张强度提高12%,热导率提高36%。复合样品的断裂表面表明,在多尺度复合材料的情况下,比纯碳/酚醛复合材料形成更强的纤维/基质界面。通过添加CNF增强了上述特性,并讨论了预测值和实验结果之间的差异。

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