Experimental radar absorption in high-filling factor magnetic composites

Fuente: arXiv
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Hauptverfasser: la Rosa, Jaume Calvo-de, Vazquez-Aige, Marc, Pérez, Paula, Medina, Laura, Marín, Pilar, Lopez-Villegas, Jose Maria, Tejada, Javier
Format: Preprint
Veröffentlicht: 2024
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author la Rosa, Jaume Calvo-de
Vazquez-Aige, Marc
Pérez, Paula
Medina, Laura
Marín, Pilar
Lopez-Villegas, Jose Maria
Tejada, Javier
author_facet la Rosa, Jaume Calvo-de
Vazquez-Aige, Marc
Pérez, Paula
Medina, Laura
Marín, Pilar
Lopez-Villegas, Jose Maria
Tejada, Javier
contents The electromagnetic properties and microwave absorption capabilities are studied in an anechoic chamber under real radar conditions for mono and bilayer composite samples consisting of a polymeric matrix and a magnetic powder filler, either metallic or ceramic. The effect of the filler type and the filling factor is investigated. The results demonstrate exceptional broadband microwave absorption, making these materials highly suitable for stealth technology applications. The experimentally measured absorptions reach -40 dB, while model-based predictions suggest that these systems could overpass the barrier of -50 dB. The experimental results are supported by models, both for single and bilayer systems.
format Preprint
id arxiv_https___arxiv_org_abs_2407_05818
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Experimental radar absorption in high-filling factor magnetic composites
la Rosa, Jaume Calvo-de
Vazquez-Aige, Marc
Pérez, Paula
Medina, Laura
Marín, Pilar
Lopez-Villegas, Jose Maria
Tejada, Javier
Materials Science
Applied Physics
The electromagnetic properties and microwave absorption capabilities are studied in an anechoic chamber under real radar conditions for mono and bilayer composite samples consisting of a polymeric matrix and a magnetic powder filler, either metallic or ceramic. The effect of the filler type and the filling factor is investigated. The results demonstrate exceptional broadband microwave absorption, making these materials highly suitable for stealth technology applications. The experimentally measured absorptions reach -40 dB, while model-based predictions suggest that these systems could overpass the barrier of -50 dB. The experimental results are supported by models, both for single and bilayer systems.
title Experimental radar absorption in high-filling factor magnetic composites
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2407.05818