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Effects of Wet-Pressing and Cross-Linking on the Tensile Properties of Carbon Nanotube Fibers

机译:湿压和交联对碳纳米管纤维拉伸性能的影响

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摘要

To increase the strength of carbon nanotube (CNT) fibers (CNTFs), the mean size of voids between bundles of CNTs was reduced by wet-pressing, and the CNTs were cross-linked. Separate and simultaneous physical (roller pressing) and chemical methods (cross-linking) were tested to confirm each method’s effects on the CNTF strength. By reducing the fraction of pores, roller pressing decreased the cross-sectional area from 160 μm2 to 66 μm2 and increased the average load-at-break from 2.83 ± 0.25 cN to 4.41 ± 0.16 cN. Simultaneous injection of crosslinker and roller pressing augmented the cross-linking effect by increasing the infiltration of the crosslinker solution into the CNTF, so the specific strength increased from 0.40 ± 0.05 N/tex to 0.67 ± 0.04 N/tex. To increase the strength by cross-linking, it was necessary that the size of the pores inside the CNTF were reduced, and the infiltration of the solution was increased. These results suggest that combined physical and chemical treatment is effective to increase the strength of CNTFs.
机译:为了增加碳纳米管(CNT)纤维(CNTFs)的强度,通过湿压减小CNT束之间空隙的平均尺寸,并使CNT交联。测试了分别同时进行的物理(滚压)和化学方法(交联),以确认每种方法对CNTF强度的影响。通过减少孔的比例,辊压将横截面积从160μm 2 减小到66μm 2 ,并将平均断裂载荷从2.83±0.25增加cN为4.41±0.16 cN。交联剂和辊压的同时注入通过增加交联剂溶液向CNTF中的渗透而增强了交联效果,因此比强度从0.40±0.05 N / tex增加到0.67±0.04 N / tex。为了通过交联增加强度,必须减小CNTF内部的孔的尺寸,并增加溶液的渗透。这些结果表明,物理和化学联合处理可有效提高CNTF的强度。

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