Gaussian Model of Anti-Radar Properties for Coatings Based on Carbonyl Iron Powder

Author:

Przybył Wojciech1ORCID,Mazurczuk Robert1,Kalinowski Artur2ORCID,Bogdanowicz Krzysztof A.1ORCID

Affiliation:

1. Military Institute of Engineer Technology, Obornicka 136, 50-961 Wrocław, Poland

2. Faculty of Mechatronics and Mechanical Engineering, Kielce University of Technology, Al. 1000-lecia P. P. 7, 25-314 Kielce, Poland

Abstract

The article presents the Gaussian model of the electromagnetic radiation attenuation properties of two resin systems containing 75% or 80% of a carbonyl iron load as an absorber in the 4–18 GHz range. For the attenuation values obtained in the laboratory, mathematical fitting was performed in the range of 4–40 GHz to visualize the full curve characteristics. The simulated curves fitted up to a 0.998 R2 value of the experimental results. The in depth analysis of the simulated spectra allowed a thorough evaluation of the influence of the type of resin, absorber load, and layer thickness on reflection loss parameters such as the maximum attenuation, peak position, half-height width, and base slope of the peak. The simulated results were convergent with the literature findings, allowing a much deeper analysis. This confirmed that the suggested Gaussian model could provide additional information, useful in terms of comparative analyses of datasets.

Publisher

MDPI AG

Subject

General Materials Science

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