Yin Jianjun, Ma Wensuo, Gao Zuobin, Lei Xianqing, Jia Chenhui
School of Mechatronic Engineering, Henan University of Science and Technology, 48 Xiyuan Road, Luoyang 471003, China.
Polymers (Basel). 2022 Jun 28;14(13):2635. doi: 10.3390/polym14132635.
Based on the wave absorption model of 3D woven fabric and the zero-reflection equations, a new structural design method of 3D electromagnetic (EM) wave-absorbing woven fabrics was obtained. The 3D woven fabrics fabricated by the proposed method had the structure of a bidirectional angle interlock. Continuous S-2 glass fibers were used as the matching layer of this 3D woven fabric, and continuous carbon fibers were used as the absorbing layer. The absorbing layer satisfied the equivalent EM parameters under the condition of zero reflection. The results of the simulation and experiment showed that the performance trends of the 3D wave-absorbing fabric obtained by this method were consistent with the theory, which verified the correctness of the structure design method. The 3D fabrics obtained by this method have the advantages of wide absorbing frequencies and good absorbing performance (-20 dB). This structural design method also has theoretical guiding significance for the development of 3D wave-absorbing fabrics.
基于三维机织物的吸波模型和零反射方程,得到了一种新型的三维电磁吸波机织物结构设计方法。采用该方法制备的三维机织物具有双向角联锁结构。连续S-2玻璃纤维用作该三维机织物的匹配层,连续碳纤维用作吸收层。吸收层在零反射条件下满足等效电磁参数。模拟和实验结果表明,该方法制备的三维吸波织物的性能趋势与理论一致,验证了结构设计方法的正确性。该方法制备的三维织物具有吸波频率宽、吸波性能好(-20 dB)的优点。该结构设计方法对三维吸波织物的开发也具有理论指导意义。