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Comparative Characterization of Multiscale Carbon Fiber Composite with Long and Short MWCNTs at Higher Weight Fractions

机译:多尺寸碳纤维复合材料在较高的重量分数下的多尺寸碳纤维复合材料的比较特征

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摘要

There are documented advantages to using carbon nanotubes (CNTs) in composites for various property enhancements. However, to date, only limited studies have been conducted on using of longer CNTs over 1 mm in length. This study used long multiwalled carbon nanotubes (LMWCNTs) and their longer extended networks to test multiple properties in thermal conductivity, electrical conductivity, mechanical strength, and modulus and then compared these properties to those of shorter multi-walled carbon nanotubes (SMWCNTs). For carbon fiber-reinforced composites, the longer graphite paths from LMWCNTs in the matrix were expected to improve all properties. The longer networks were expected to allow for more undisturbed phonon transportation to improve thermal conductivity. This in turn relates to improved electrical conductivity and better mechanical properties. However, results have shown that the LMWCNTs do not improve or decrease thermal conductivity, whereas the shorter MWCNTs provide mixed results. LMWCNTs did show improvements in electrical, mechanical, and physical properties, but compared to shorter MWCNTs, the results in other certain properties varied. This perplexing outcome resides in the functioning of the networks made by both the LMWCNTs and shorter MWCNTs.
机译:在复合材料中使用碳纳米管(CNTS)进行了文献的优点,用于各种性质增强。然而,迄今为止,只有有限的研究已经在长度上使用超过1mm的更长的CNT进行了。本研究使用了长多壁碳纳米管(LMWCNT)及其更长的扩展网络,以在导热率,导电性,机械强度和模量中测试多种性质,然后将这些性质与短的多壁碳纳米管(SMWNTS)进行比较。对于碳纤维增强复合材料,预期基质中LMWNT的较长石墨路径改善所有性质。期望较长的网络允许更不受干扰的声子输送以提高导热率。这反过来涉及改善的电导率和更好的机械性能。然而,结果表明,LMWNT不会改善或降低导热率,而较短的MWNT提供混合结果。 LMWCNT确实显示出电气,机械和物理性质的改善,但与短MWNTS相比,其他某些特性的结果变化。这种令人困惑的结果驻留在LMWNT和较短的MWCNT中所做的网络的运行中。

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