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Mechanical and thermal expansion properties of aligned carbon nanotube reinforced epoxy composites

机译:定向碳纳米管增强环氧复合材料的机械和热膨胀性能

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摘要

Aligned MWCNT/epoxy composites made with the three types of the multi-walled carbon nanotubes (MWCNTs) with different thermal annealing temperature have been prepared, and the tensile tests and thermal expansion tests of the composites in the MWCNT alignment direction were conducted to evaluate the effects of crystallinity of MWCNTs on the mechanical and thermal expansion properties of aligned MWCNT reinforced epoxy composites. Additionally, the coefficients of thermal expansion (CTEs) of the MWCNTs in the axial direction were computed by using the Young's modulus of the MWCNTs and the CTE of the composites in Turner's model. The annealing temperatures of the MWCNTs were 2400°C and 2900°C. It was shown that the thermal annealing of MWCNTs was effective for improving the crystallinity of the MWCNTs, while it had no major effects on both tensile strength and Young's modulus of the composites. This is mainly because the thermally annealed MWCNTs themselves possessed almost comparable nominal tensile strength (~4-5 GPa) and Young's modulus (~200 GPa) compared with the as-grown MWCNTs. On the other hand, we demonstrated by thermal expansion testing that the thermal contraction of the composites in the nanotube alignment direction was observed by the addition of MWCNTs. All the MWCNTs possessed negative CTEs and the CTEs tend to become more negative with increasing annealing temperature. This is probably because of a decrease in the number of small defects (vacancies and Stone-Wales defects) and intershell cross-linking defects associated with sp~(3) carbons, and an increase in the sp~(2) carbons owing to the high-temperature thermal annealing.
机译:制备了三种不同热退火温度的多壁碳纳米管(MWCNTs)制备的取向碳纳米管/环氧复合材料,并进行了取向测试和拉伸测试碳纳米管的结晶度对取向碳纳米管增强环氧复合材料的机械和热膨胀性能的影响。另外,通过使用特纳模型中的MWCNT的杨氏模量和复合材料的CTE来计算MWCNT在轴向上的热膨胀系数(CTE)。 MWCNT的退火温度为2400℃和2900℃。结果表明,MWCNTs的热退火可有效提高MWCNTs的结晶度,而对复合材料的拉伸强度和杨氏模量均无重大影响。这主要是因为与退火后的MWCNT相比,热退火的MWCNT本身具有几乎可比的标称抗拉强度(〜4-5 GPa)和杨氏模量(〜200 GPa)。另一方面,我们通过热膨胀测试证明,通过添加MWCNT,可以观察到复合材料在纳米管排列方向上的热收缩。所有的MWCNT具有负的CTE,并且随着退火温度的升高,CTE趋于变得更负。这可能是由于与sp〜(3)碳有关的小缺陷(空位和Stone-Wales缺陷)和壳间交联缺陷的数量减少,以及由于sp〜(3)碳导致的sp〜(2)碳增加。高温热退火。

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