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Microwave-absorbing honeycomb core structure with nickel-coated glass fabric prepared by electroless plating

机译:微波吸收蜂窝芯结构与镀镍玻璃织物,由化学镀制备

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摘要

In this study, we designed and fabricated a broadband microwave-absorbing honeycomb core structure using a nickel-coated glass fabric, which can absorb the electromagnetic waves propagating along three orthogonal directions. The electromagnetic properties of the pristine glass fabric were modified via an electroless nickel plating. The elemental composition, phase identification, and magnetic characteristics of the nickel-coated glass fabric were examined via scanning electron microscopy, energy-dispersive X-ray spectroscopy, X-ray diffraction, and vibrating-sample magnetometry. Unlike the implement methods of conventional microwaveabsorbing honeycomb core structure such as dip coating, spray coating, and foam-filling, the proposed structure was produced without incorporating conductive particles or metal magnetic micropowders within the polymer matrix. The fabricated structure exhibited an absorption of -10 dB from 5.8 to 18 GHz and it was in good agreement with simulation result. In addition, we performed tensile, compressive, and interlaminar shear tests to evaluate the mechanical performance of the structure. Given the desirable radar-absorption and mechanical characteristics of the structure, it has significant potential for use in stealth technology applications.
机译:在这项研究中,我们使用镀镍玻璃织物设计和制造了宽带微波吸收蜂窝芯结构,其可以吸收沿三个正交方向传播的电磁波。通过无电镀镀镍改性原始玻璃织物的电磁特性。通过扫描电子显微镜,能量分散X射线光谱,X射线衍射和振动样磁体检查镍涂层玻璃织物的元素组成,相位鉴定和磁性。与诸如浸涂,喷涂和发泡泡沫填充的常规微针刺蜂窝芯结构的实施方法不同,制造所提出的结构而不将导电颗粒或聚合物基质内的金属磁性微量陶器掺入。制造的结构表现出-10 dB的吸收,从5.8到18 GHz,它与模拟结果一致。此外,我们进行了拉伸,压缩和层间剪切试验,以评估结构的机械性能。鉴于结构的理想雷达吸收和机械特性,它具有在隐形技术应用中使用的显着潜力。

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