TY - JOUR
T1 - Design-manufacturing-evaluation integrated of microwave absorption metastructure based on large variation genetic-ant colony fusion optimization algorithm and additive manufacturing
AU - Huang, Yixing
AU - Zhao, Pengzhen
AU - Sun, Yingjian
AU - Liao, Haitao
AU - Dong, Huaiyu
AU - Gao, Shuailong
AU - Li, Qun
AU - Zhao, Tian
AU - Li, Ying
N1 - Publisher Copyright:
© 2025
PY - 2025/2
Y1 - 2025/2
N2 - Absorbing materials and structures are widely used in military and civilian fields, such as electromagnetic wave protection and stealth technology. However, current materials face challenges including high mass, limited load-bearing capacity, and the lack of integrated material-structure designs. In this study, we combined additive manufacturing technology with a hybrid optimization algorithm, integrating large mutation genetic and ant colony algorithms, to develop a novel lightweight honeycomb structure. The optimized structure achieved broadband absorption over 91.84 % of the 2 GHz–40 GHz range and demonstrated superior mechanical performance, with a maximum deflection of 13.72 mm and a load capacity of 2.87 kN. These findings present an innovative strategy for designing lightweight structures that effectively balance electromagnetic absorption and mechanical durability.
AB - Absorbing materials and structures are widely used in military and civilian fields, such as electromagnetic wave protection and stealth technology. However, current materials face challenges including high mass, limited load-bearing capacity, and the lack of integrated material-structure designs. In this study, we combined additive manufacturing technology with a hybrid optimization algorithm, integrating large mutation genetic and ant colony algorithms, to develop a novel lightweight honeycomb structure. The optimized structure achieved broadband absorption over 91.84 % of the 2 GHz–40 GHz range and demonstrated superior mechanical performance, with a maximum deflection of 13.72 mm and a load capacity of 2.87 kN. These findings present an innovative strategy for designing lightweight structures that effectively balance electromagnetic absorption and mechanical durability.
KW - Design-manufacturing-evaluation integrated
KW - Large variation genetic and ant colony fusion optimization algorithm
KW - Microwave absorbing metastructure
UR - http://www.scopus.com/inward/record.url?scp=85216110934&partnerID=8YFLogxK
U2 - 10.1016/j.coco.2025.102264
DO - 10.1016/j.coco.2025.102264
M3 - Article
AN - SCOPUS:85216110934
SN - 2452-2139
VL - 54
JO - Composites Communications
JF - Composites Communications
M1 - 102264
ER -