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A facile approach to the scalable preparation of thermoplastic/carbon nanotube composites

机译:热塑性/碳纳米管复合材料可伸缩制剂的容易方法

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摘要

Disentangling and dispersing multiwalled carbon nanotubes (MWCNTs) in thermoplastics by the existing melt compounding facilities where neither solvent nor liquid chemicals are allowed remains a great challenge. This challenge is addressed herein by combining ball milling with melt compounding. Specifically, ball milling is applied to disentangle MWCNTs and to eventually liberate each tube from agglomeration, and then the tubes are melt compounded with SSFs (PA6). A uniformly distributed MWCNT network is observed; obvious load transfer from the matrix to the tubes is evidenced by the presence of many firmly embedded tubes on the fracture surface. The electrical conductivity percolation threshold of PA6/MWCNT composites is found to be 2.5-3.0 wt%, in comparison with 5.0-8.0 wt% for PA6/stainless steel fiber composites. The PA6/MWCNT composite at 10.0 wt% shows a 76% increase in flexural modulus and 58% in flexural strength.
机译:现有的熔融配合设施在热塑性塑料中解散和分散多壁碳纳米管(MWCNTs),其中既不允许溶剂也不允许液体化学品仍然是一个巨大的挑战。 通过将球研磨与熔融配合组合来解决该挑战。 具体地,球磨用于解开MWCNTs并最终从附聚中释放每个管,然后用SSF(PA6)熔融。 观察到均匀分布的MWCNT网络; 从裂缝表面上存在许多牢固的管道,从基质到管中的显而易见的负载转移。 与PA6 /不锈钢纤维复合材料的5.0-8.0wt%相比,PA6 / MWCNT复合材料的电导率渗透阈值为2.5-3.0wt%。 10.0wt%的PA6 / MWCNT复合材料显示弯曲模量增加76%,弯曲强度为58%。

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