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使用添加金属粉末增强的内墙涂料进行电磁场屏蔽。

Electromagnetic Field Shielding Using Interior Paints Enhanced with Metal Powders.

作者信息

Zbojovský Ján, Liptai Pavol

机构信息

Department of Electric Power Engineering, Faculty of Electrical Engineering and Informatics, Technical University of Košice, Letná 1/9, 042 00 Košice-Sever, Slovakia.

Institute of Recycling and Environmental Technologies, Faculty of Materials, Metallurgy and Recycling, Technical University of Košice, Letná 1/9, 042 00 Košice-Sever, Slovakia.

出版信息

Materials (Basel). 2025 Aug 21;18(16):3916. doi: 10.3390/ma18163916.

Abstract

This article deals with the issue of electromagnetic radiation, specifically methods of eliminating radiation using protective coatings. Protective coatings were created from commercially available fabricated but also recycled metal powders and commonly available interior paint. The aim of the experiments was to produce protective coatings with different qualitative and quantitative compositions and subsequently test their shielding effects. For the preparation of the coatings, mixtures in the form of commercially produced powder with a particle size of <10 μm were used, namely aluminum oxide (AlO), manganese dioxide (MnO), and graphite (C). Recycled powders are powdered iron (Fe) and zinc oxide (ZnO) with a particle size of <50 μm. The powders were mixed in various ratios and compounds into a commercially available white interior paint. Measurements were performed in the frequency range of 0.9-9 GHz with a step of 0.1 GHz, evaluating the shielding effectiveness, absorption, and reflection. The best shielding values were achieved for samples containing 100 g of carbon powder, 100 g of iron powder, and 100 g of manganese dioxide, ranging from 0.38 to 6.2 dB in the full measured frequency range.

摘要

本文探讨电磁辐射问题,特别是使用防护涂层消除辐射的方法。防护涂层由市售的预制金属粉末以及回收金属粉末和常用的室内涂料制成。实验的目的是制备具有不同质量和数量组成的防护涂层,随后测试它们的屏蔽效果。制备涂层时,使用了粒径小于10μm的市售粉末形式的混合物,即氧化铝(AlO)、二氧化锰(MnO)和石墨(C)。回收粉末是粒径小于50μm的铁粉(Fe)和氧化锌(ZnO)。这些粉末以各种比例和化合物混合到市售的白色室内涂料中。在0.9 - 9GHz频率范围内,以0.1GHz为步长进行测量,评估屏蔽效能、吸收和反射。对于含有100g碳粉、100g铁粉和100g二氧化锰的样品,在整个测量频率范围内,屏蔽值最佳,范围为0.38至6.2dB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57c6/12387803/dce8099211ab/materials-18-03916-g001.jpg

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