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Effective reinforcement of electrical conductivity and strength of carbon nanotube fibers by silver-paste-liquid infiltration processing

机译:银浆液浸渗工艺有效增强碳纳米管纤维的导电性和强度

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摘要

A carbon-nanotube (CNT)/silver/polymer composite fiber was fabricated using carbon nanotube fiber (CNTF) to infiltrate silver-paste liquid for effective reinforcement of electrical conductivity and strength of the CNT fibers. The as-obtained composite fiber is still flexible with a content of 43 wt% CNTs. Scanning electronic microscopy (SEM) observation shows that the silver-paste layer covering on the surface of the CNTF and polymer infiltrated into the CNTFs. The electrical conductivity and strength of the achieved composite fiber were effectively improved. Mechanical measurement of the composite fiber gave a strength of 940 MPa, 2.7 times that of a reference CNTF. The electrical conductivity of the composite fiber is 5,0 × 10~5 S m~(-1), 2.6 times that of the referenced CNTF. Additionally, through control of the fabrication process, a coaxial fiber comprising a silver-paste "tube" and pure CNT fiber can be achieved. This route for making composite fibers is easy and controllable, apt for development of high-performance fibers.
机译:碳纳米管(CNT)/银/聚合物复合纤维是利用碳纳米管纤维(CNTF)渗入银浆液制成的,以有效增强CNT纤维的导电性和强度。如此获得的复合纤维仍然是柔性的,其CNT含量为43重量%。扫描电子显微镜(SEM)观察表明,覆盖在CNTF表面上的银膏层和聚合物渗透到CNTF中。有效提高了所得复合纤维的电导率和强度。机械测量复合纤维的强度为940 MPa,是参考CNTF的2.7倍。复合纤维的电导率为5.0×10〜5 S m〜(-1),是参考CNTF的2.6倍。另外,通过控制制造过程,可以实现包括银糊“管”和纯CNT纤维的同轴纤维。这种制造复合纤维的途径是容易且可控的,易于开发高性能纤维。

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