TY - JOUR
T1 - 3D printed SiC nanowire reinforced composites for broadband electromagnetic absorption
AU - Xiao, Shanshan
AU - Mei, Hui
AU - Han, Daoyang
AU - Cheng, Laifei
N1 - Publisher Copyright:
© 2019 Elsevier Ltd and Techna Group S.r.l.
PY - 2019/6/15
Y1 - 2019/6/15
N2 - SiC nanowire/acrylic resin (SiC nw /ACR) composites with broadband electromagnetic (EM) absorption capabilities were fabricated by a novel procedure using 3D stereolithography (3D-SL) printing technology. The EM absorption abilities of the composites can be adjusted by tuning the SiC nw content and the thickness of the printing layer. When the SiC nw content is 3 wt% and the thickness of the printing layer is 25 μm–50 μm, the SiC nw /ACR composite has an optimally broad effective absorption bandwidth (EAB) and a high efficiency for EM absorption, whether assessing the C, X or Ku band, because of the high dielectric loss and proper impedance matching between the materials and free space. In the C band (4–8 GHz), the EAB reaches 2.9 GHz, and the reflection loss (RL) reaches −34.1 dB; in the X band (8–12 GHz), the EAB reaches 4 GHz, which covers the entire X band, and the RL reaches −34.5 dB; in the Ku band (12–18 GHz), the EAB exceeds 6 GHz, which covers the whole Ku band, and the RL reaches −34.7 dB. This research is of great importance to the rapid preparation of parts, shells or devices with arbitrarily complex shapes and high efficiency broadband EM absorption abilities.
AB - SiC nanowire/acrylic resin (SiC nw /ACR) composites with broadband electromagnetic (EM) absorption capabilities were fabricated by a novel procedure using 3D stereolithography (3D-SL) printing technology. The EM absorption abilities of the composites can be adjusted by tuning the SiC nw content and the thickness of the printing layer. When the SiC nw content is 3 wt% and the thickness of the printing layer is 25 μm–50 μm, the SiC nw /ACR composite has an optimally broad effective absorption bandwidth (EAB) and a high efficiency for EM absorption, whether assessing the C, X or Ku band, because of the high dielectric loss and proper impedance matching between the materials and free space. In the C band (4–8 GHz), the EAB reaches 2.9 GHz, and the reflection loss (RL) reaches −34.1 dB; in the X band (8–12 GHz), the EAB reaches 4 GHz, which covers the entire X band, and the RL reaches −34.5 dB; in the Ku band (12–18 GHz), the EAB exceeds 6 GHz, which covers the whole Ku band, and the RL reaches −34.7 dB. This research is of great importance to the rapid preparation of parts, shells or devices with arbitrarily complex shapes and high efficiency broadband EM absorption abilities.
KW - 3D printing
KW - Electromagnetic absorption
KW - Microstructural analysis
KW - Parameter optimization
KW - SiC nanowires
UR - https://www.scopus.com/pages/publications/85062663237
U2 - 10.1016/j.ceramint.2019.03.015
DO - 10.1016/j.ceramint.2019.03.015
M3 - 文章
AN - SCOPUS:85062663237
SN - 0272-8842
VL - 45
SP - 11475
EP - 11483
JO - Ceramics International
JF - Ceramics International
IS - 9
ER -