TY - JOUR
T1 - High-temperature multispectral stealth metastructure from the microwave-infrared compatible design
AU - An, Zhimin
AU - Huang, Yixing
AU - Zhang, Rubing
N1 - Publisher Copyright:
© 2023 Elsevier Ltd
PY - 2023/6/15
Y1 - 2023/6/15
N2 - Microwave and infrared stealth technology plays an important role in the development of military equipment and national defense. However, with the development of high Mach number weapons, it is urgent to develop the new materials with high temperature multispectral compatible stealth. In this paper, a new multispectral stealth metastructure is proposed, which can achieve high temperature microwave absorption and infrared stealth simultaneously. The metastructure is optimized based on Large-Mutation Genetic Algorithm (LMGA), and the high temperature resistant patterned resistive film (PRF) is reasonably distributed to dissipate the incident microwave energy. The high temperature infrared stealth is realized by the dual regulation of high-strength thermal insulation skeleton and low emissivity infrared metasurface to reduce target infrared radiation. Effective bandwidth (≤−10 dB) at 1000 °C is 2–3.5 GHz and 5.4–18 GHz. Low thermal insulation (∼0.104 W/(m·k)) and low infrared emissivity (∼0.39 at 800 °C) can reduce the target infrared radiation energy by 91.7%. This research provides an effective way to design microwave infrared compatible stealthy materials with huge multifunction.
AB - Microwave and infrared stealth technology plays an important role in the development of military equipment and national defense. However, with the development of high Mach number weapons, it is urgent to develop the new materials with high temperature multispectral compatible stealth. In this paper, a new multispectral stealth metastructure is proposed, which can achieve high temperature microwave absorption and infrared stealth simultaneously. The metastructure is optimized based on Large-Mutation Genetic Algorithm (LMGA), and the high temperature resistant patterned resistive film (PRF) is reasonably distributed to dissipate the incident microwave energy. The high temperature infrared stealth is realized by the dual regulation of high-strength thermal insulation skeleton and low emissivity infrared metasurface to reduce target infrared radiation. Effective bandwidth (≤−10 dB) at 1000 °C is 2–3.5 GHz and 5.4–18 GHz. Low thermal insulation (∼0.104 W/(m·k)) and low infrared emissivity (∼0.39 at 800 °C) can reduce the target infrared radiation energy by 91.7%. This research provides an effective way to design microwave infrared compatible stealthy materials with huge multifunction.
KW - High temperature
KW - Infrared radiation property
KW - Metastructure
KW - Microwave absorption
KW - Multispectral compatible stealth
UR - http://www.scopus.com/inward/record.url?scp=85152493728&partnerID=8YFLogxK
U2 - 10.1016/j.compositesb.2023.110737
DO - 10.1016/j.compositesb.2023.110737
M3 - Article
AN - SCOPUS:85152493728
SN - 1359-8368
VL - 259
JO - Composites Part B: Engineering
JF - Composites Part B: Engineering
M1 - 110737
ER -