Caramitu Alina R, Ciobanu Romeo C, Ion Ioana, Schreiner Cristina M, Aradoaei Mihaela, Tsakiris Violeta, Pintea Jana, Marinescu Virgil
National Institute for Research and Development in Electrical Engineering ICPE-CA, 030138 Bucharest, Romania.
Department of Electrical Measurements and Materials, Gheorghe Asachi Technical University, 700050 Iasi, Romania.
Polymers (Basel). 2023 May 25;15(11):2447. doi: 10.3390/polym15112447.
In this paper, the obtaining and characterization of five experimental models of novel polymer composite materials with ferrite nano-powder are presented. The composites were obtained by mechanically mixing two components and pressing the obtained mixture on a hot plate press. The ferrite powders were obtained by an innovative economic co-precipitation route. The characterization of these composites consisted of physical and thermal properties: hydrostatic density, scanning electron microscopy (SEM), and TG DSC thermal analyses, along with functional electromagnetic tests in order to demonstrate the functionality of these materials as electromagnetic shields (magnetic permeability, dielectric characteristics, and shielding effectiveness). The purpose of this work was to obtain a flexible composite material, applicable to any type of architecture for the electrical and automotive industry, necessary for protection against electromagnetic interference. The results demonstrated the efficiency of such materials at lower frequencies, but also in the microwave domain, with higher thermal stability and lifetime.
本文介绍了五种含铁氧体纳米粉末的新型聚合物复合材料实验模型的制备及表征。这些复合材料是通过机械混合两种组分并在热压片机上压制所得混合物而制备的。铁氧体粉末是通过一种创新的经济共沉淀法获得的。这些复合材料的表征包括物理和热性能:静水密度、扫描电子显微镜(SEM)和TG-DSC热分析,以及功能电磁测试,以证明这些材料作为电磁屏蔽材料的功能(磁导率、介电特性和屏蔽效能)。这项工作的目的是获得一种柔性复合材料,适用于电气和汽车行业的任何类型架构,用于防止电磁干扰。结果表明,此类材料在低频以及微波频段均有效,且具有更高的热稳定性和使用寿命。