4.8 Article

Multifunctional Polyurethane Composite Foam with Outstanding Anti-impact Capacity for Soft Body Armors

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 14, Issue 11, Pages 13778-13789

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.2c01837

Keywords

piezo-resistive composite; shear-thickening gel; strain sensor; soft body armor; superhydrophobicity

Funding

  1. National Natural Science Foundation of China [12172068, 52173067, 51803016, U1837204]
  2. Fund for Innovative Research Groups of Natural Science Foundation of Hebei Province [A2020202002]

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A multifunctional nano-SiO2/CNT/STG@PU composite foam with excellent strain-sensing ability, superhydrophobicity, and outstanding anti-impact capability has been developed, showing promising applications in personal safety protection.
Herein, a multifunctional polyurethane (PU) composite foam with a hierarchical structure is fabricated by dip-coating a carbon nanotube/shear-thickening gel (CNT/STG) and spray-coating nano-SiO2/STG on PU foam. The prepared nano-SiO2/CNT/STG@PU (SCS@PU) composite foam is lightweight, highly compressive, electrically conductive, superhydrophobic, and impact-energy absorptive. As a result, it possesses an excellent sensing ability to compression with a stable response up to 80% strain, an outstanding linearity of R-2 > 0.99, and a wide response frequency of 0.01 to 1 Hz; it can also be used for effectively detecting impact force and sensing various human motions. Moreover, the superhydrophobicity with a water contact angle up to 154 degrees of SCS@PU composite foam endows it with an excellent resistance to hazardous liquids (strong acid and alkali) to ensure its service reliability under harsh circumstances. In particular, the SCS@PU exhibits an outstanding anti-impact capability with an impact force attenuation rate of SCS@PU as high as 81%. Finally, its applications as soft body armors are demonstrated in protecting a wearer wearing a helmet with the SCS@PU as liner and using the SCS@PU as a smart kneecap against impact. On consideration of its excellent strain-sensing ability, superhydrophobicity, and outstanding anti-impact capability, the multifunctional SCS@PU composite foam developed is promising for personal safety protection.

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