Micron‐Thick Interlocked Carbon Nanotube Films with Excellent Impact Resistance via Micro‐Ballistic Impact

Author:

Xiao Kailu1,Zhang Pengfei2,Hu Dongmei2,Huang Chenguang34,Wu Xianqian1ORCID

Affiliation:

1. Institute of Mechanics Chinese Academy of Sciences Beijing 100190 China

2. Key Laboratory of Multifunctional and Smart Systems Suzhou Institute of Nano‐Tech and Nano‐Bionics Chinese Academy of Sciences Suzhou 215123 China

3. School of Engineering Science University of Chinese Academy of Sciences Beijing 100049 China

4. Hefei Institutes of Physical Science Chinese Academy of Sciences Hefei 230031 China

Abstract

AbstractThe highest specific energy absorption (SEA) of interlocked micron‐thickness carbon nanotube (IMCNT) films subjected to micro‐ballistic impact is reported in this paper. The SEA of the IMCNT films ranges from 0.8 to 1.6 MJ kg−1, the greatest value for micron‐thickness films to date. The multiple deformation‐induced dissipation channels at the nanoscale involving disorder‐to‐order transition, frictional sliding, and entanglement of CNT fibrils contribute to the ultra‐high SEA of the IMCNT. Furthermore, an anomalous thickness dependency of the SEA is observed, that is, the SEA increases with increasing thickness, which should be ascribed to the exponential growth in nano‐interface that further boosts the energy dissipation efficiency as the film thickness increases. The results indicate that the developed IMCNT overcomes the size‐dependent impact resistance of traditional materials and demonstrates great potential as a bulletproof material for high‐performance flexible armor.

Funder

National Natural Science Foundation of China

Youth Innovation Promotion Association

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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