Advances in Polymer-Based Microwave Absorbers—From Design Principles to Technological Breakthroughs: A Review

Shovan Ray;Ravi Panwar
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Abstract

Designing effective microwave-absorbing materials (MAMs) and microwave-absorbing structures (MASs) can be complex and requires a deep understanding of microwave absorption theory, material science, and engineering principles. This review article offers an extensive overview of polymer-constituted MAMs and MASs, highlighting their significance in modern electromagnetic interference (EMI) mitigation and stealth applications. Polymer-based MAMs have gained significant attention due to their tunable electromagnetic (EM) properties, lightweight nature, flexibility, and versatility in design. This article dives into the synthesis methods, material properties, and various underlying EM mechanisms that govern the absorption behavior of these polymers in different frequency ranges. This article surveys various polymer-based systems such as intrinsically conducting polymers (ICPs), polymer nanocomposites, metamaterials (MMs), and frequency-selective surfaces (FSSs) elucidating their unique features in microwave absorption applications. It explores the critical factors influencing absorption performance, including dielectric and magnetic properties, filler content, morphology, and thickness. In addition, this article addresses the challenges associated with achieving broadband absorption with a lightweight and conformal structure. The comprehensive survey of recent research contributions and technological advancements demonstrates the potential applications of polymer-constituted microwave absorbers in diverse fields. It also discusses developing novel fabrication and performance evaluation techniques for polymer-constituted absorbers. In summary, this article is useful for researchers in designing and optimizing polymer-based MAMs and MASs.
聚合物基微波吸收剂的研究进展——从设计原理到技术突破
设计有效的微波吸收材料(MAMs)和微波吸收结构(MASs)可能是复杂的,需要对微波吸收理论、材料科学和工程原理有深入的了解。这篇综述文章提供了聚合物构成的MAMs和MASs的广泛概述,强调了它们在现代电磁干扰(EMI)缓解和隐身应用中的意义。聚合物基mam由于其可调谐电磁(EM)特性、轻量化、灵活性和设计的多功能性而受到广泛关注。本文深入研究了合成方法、材料特性以及控制这些聚合物在不同频率范围内吸收行为的各种潜在EM机制。本文综述了各种基于聚合物的系统,如本质导电聚合物(icp)、聚合物纳米复合材料、超材料(mm)和频率选择表面(fss),阐明了它们在微波吸收应用中的独特特征。它探讨了影响吸收性能的关键因素,包括介电和磁性能、填料含量、形貌和厚度。此外,本文还讨论了用轻量级保形结构实现宽带吸收所面临的挑战。本文对近年来的研究成果和技术进展进行了综合综述,论证了聚合物构成的微波吸收剂在各个领域的潜在应用。还讨论了聚合物结构吸收剂的新型制造和性能评价技术的发展。综上所述,本文对基于聚合物的MAMs和MASs的设计和优化有一定的参考价值。
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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