Electromagnetic and Electronic Aerospace Conformal Load-Bearing Smart Skins: A Review

IF 6.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Grzegorz Beziuk;Andrew Krajewski;Thomas C. Baum;Kelvin J. Nicholson;Kamran Ghorbani
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引用次数: 0

Abstract

Multifunctional composite structures (MFCS) have become an increasingly important field of research with the large-scale adoption of composite materials in many industrial sectors such as aerospace, automotive, sport and recreation equipment (bikes, scooters, etc.) and maritime. It is a diverse field which includes scientific areas in electromagnetics, electronics, material sciences, structures and structural augmentation, sensors, and thermal management. The paper investigates Conformal Load-bearing Smart Skins (CLSS) as a part of multifunctional composite structures specifically related to aerospace applications and focuses on the seamless incorporation and synergistic coexistence between electronic devices and composite materials. Current trends in materials and manufacturing processes, as well as measurement techniques used to validate both the electromagnetic and structural responses have been explored and discussed. Furthermore, it identifies some of the challenges and complexities associated with CLSS and explores future areas of research which still need to be addressed.
电磁和电子航空共形承重智能蒙皮:综述
随着复合材料在航空航天、汽车、运动和娱乐设备(自行车、滑板车等)以及航海等众多工业领域的大规模应用,多功能复合材料结构(MFCS)已成为一个日益重要的研究领域。这是一个多元化的领域,包括电磁学、电子学、材料科学、结构和结构增强、传感器和热管理等科学领域。本文研究了作为多功能复合材料结构一部分的共形承载智能蒙皮(CLSS),特别是与航空航天应用相关的共形承载智能蒙皮,重点关注电子设备与复合材料之间的无缝结合和协同共存。报告探讨并讨论了材料和制造工艺的当前趋势,以及用于验证电磁和结构响应的测量技术。此外,报告还指出了与 CLSS 相关的一些挑战和复杂性,并探讨了未来仍需解决的研究领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
10.70
自引率
0.00%
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0
审稿时长
8 weeks
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