Preparation, testing, and design of a radar‐absorption polymethacrylimide foam

Author:

Song Shijun1ORCID,Yuan Jie2,Duan Rongxia1,Xiong Chao1,Yin Junhui1,Zhao Fang1,Han Chao1,Yang Zhaoshu3,Liu Lei4

Affiliation:

1. Army Engineering University of PLA, Shijiazhuang Campus Shijiazhuang China

2. Stealth Material R&D Department of Hunan Boxiang New Materials Co., Ltd Changsha China

3. National Key Laboratory of Human Factors Engineering China Astronaut Research and Training Center Beijing China

4. Research Institute of Longhua Technology Group Co., Ltd. Luoyang China

Abstract

AbstractThis article presents a new radar‐absorbing polymethacrylimide (RAPMI) foam, measures the electromagnetic (EM) parameters of the foam, and establishes mechanical prediction models. The reflection loss (RL) curves of foams with different thicknesses and absorbent weight ratios (wt%) were analyzed along with the shear and compression behaviors of the RAPMI foam. Gibson models of the RAPMI foam were then established. The parametric effects of the absorption performance of multilayered RAPMI foams were analyzed using multimedia transmission‐line theory. A numerically designed RAPMI foam exhibited excellent EM performance while retaining the outstanding mechanical properties of the original foam. The laminated foam can theoretically achieve a full‐band effective absorption (RL ≤ −10 dB) of 2–18 GHz with a minimal thickness of 33.1 mm.

Funder

National Natural Science Foundation of China

Hebei Provincial Key Research Projects

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry

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