Laser powder bed fusion printing of compound-eye inspired impedance-matched 3D all-fiber-structured SiC metamaterial for ultra-broadband electromagnetic absorption

IF 11.1 1区 工程技术 Q1 ENGINEERING, MANUFACTURING Additive manufacturing Pub Date : 2025-02-25 Epub Date: 2025-01-30 DOI:10.1016/j.addma.2025.104665
Changshun Wang , Qingchun Yang , Huaying You , Yumeng Hu , Chunze Yan , Annan Chen , Shixiang Zhou , Guizhou Liu , Siqi Wu , Yusheng Shi
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Abstract

Silicon carbide (SiC) ceramic-based composites have attracted significant attention for electromagnetic (EM) absorption under extreme environments. However, achieving the balance between impedance matching and attenuation capacity remains an urgent challenge. Inspired by the unique physiological impedance matching and light signal processing characteristics of the compound eye, a synergistic mechanism of macro impedance matching and micro attenuation has been applied to the fabrication of SiC metamaterial absorbers. The excellent impedance matching characteristic was achieved by optimizing the size parameters of frustum pyramid structures. Additionally, the strong intrinsic attenuation capacity was achieved by introducing 3D cross-linked structures constructed by micro/nano SiC fibers. Herein, the compound-eye inspired SiC metamaterial absorber was successfully generated using laser powder bed fusion (LPBF) with an optimized effective absorbing bandwidth (EAB) of 36.06 GHz (3.94−40 GHz) with a printed thickness of 12 mm. The wide-angle absorption was also realized within 0−60° and 0−70° under transverse electric (TE) and transverse magnetic (TM) polarization modes. The compound-eye inspired 3D macro/micro structure integrated strategy provides an efficient approach for the design and fabrication of broadband SiC metamaterial absorbers.
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超宽带电磁吸收用复眼激发阻抗匹配三维全纤维结构碳化硅超材料的激光粉末床熔融打印
碳化硅(SiC)陶瓷基复合材料在极端环境下的电磁吸收备受关注。然而,如何在阻抗匹配和衰减能力之间取得平衡仍然是一个迫切的挑战。受复眼独特的生理阻抗匹配和光信号处理特性的启发,将宏观阻抗匹配与微观衰减的协同机制应用于碳化硅超材料吸收材料的制备。通过优化锥体结构的尺寸参数,获得了良好的阻抗匹配特性。此外,通过引入由微纳米碳化硅纤维构建的三维交联结构,实现了较强的本征衰减能力。本文采用激光粉末床熔融(LPBF)技术成功制备了复合眼启发的SiC超材料吸收体,其优化有效吸收带宽(EAB)为36.06 GHz(3.94−40 GHz),打印厚度为12 mm。在横向电极化(TE)和横向磁极化(TM)模式下,在0 ~ 60°和0 ~ 70°范围内也实现了广角吸收。这种受复眼启发的三维宏观/微观结构集成策略为宽带碳化硅超材料吸收材料的设计和制造提供了一种有效的方法。
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来源期刊
Additive manufacturing
Additive manufacturing Materials Science-General Materials Science
CiteScore
19.80
自引率
12.70%
发文量
648
审稿时长
35 days
期刊介绍: Additive Manufacturing stands as a peer-reviewed journal dedicated to delivering high-quality research papers and reviews in the field of additive manufacturing, serving both academia and industry leaders. The journal's objective is to recognize the innovative essence of additive manufacturing and its diverse applications, providing a comprehensive overview of current developments and future prospects. The transformative potential of additive manufacturing technologies in product design and manufacturing is poised to disrupt traditional approaches. In response to this paradigm shift, a distinctive and comprehensive publication outlet was essential. Additive Manufacturing fulfills this need, offering a platform for engineers, materials scientists, and practitioners across academia and various industries to document and share innovations in these evolving technologies.
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