Research and Development in the Field of Creating Materials, Technologies and Safety Equipment

V. A. Bogush, L. V. Lynkou, N. V. Nasonova, S. L. Prischepa, E. S. Belousova, O. Boiprav, H. V. Davydau, V. A. Papou, A. V. Patapovich, H. A. Pukhir
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Abstract

Technologies for the manufacture of microwave electromagnetic shields based on powdered carbon, foil and composite multilayer materials are presented. Technological methods for their manufacture and shielding properties are described, and the main mechanisms leading to increased shielding properties are considered depending on the manufacturing technology, composition and alternation of composite layers. It is shown that the values of the reflection coefficient of electromagnetic radiation in the frequency range 2–17 GHz for the shields considered reach a value of (–20) dB. Microwave absorbers with a reflection characteristic lower than (–10.0) dB (down to (–52.0) dB) in the frequency band 8.0–12.0 GHz are developed, and the electrophysical parameters, composition and concentration of components of the composite materials for such microwave absorbers are determined. The systems for active protection of speech information that use combined masking signals consisting of “white” noise and speech-like signals as masking signals, along with “white” noise are considered. Criteria have been developed for the approach to selecting speakers and audiences when assessing speech intelligibility to solve problems of protecting speech information and methods for experimental studies of speech intelligibility against a background of masking acoustic noise. Technologies for the formation of nanocomposites based on carbon nanotubes and nanoparticles of ferromagnetic materials are presented to increase the degree of coherence of the spin texture at macroscopic distances, increase the degree of security of electronic products to strong magnetic fields and noise immunity. It has been shown that at certain concentrations of ferromagnetic nanoparticles, micromagnetic parameters increase, ensuring high performance of active elements in magnetic fields. The role of carbon in this case turns out to be decisive. The presented results seem promising for use in the creation of anechoic chambers, partitions for separating indoor zones intended for the location of electronic devices, products for protecting humans from the effects of electromagnetic radiation in the microwave range, and the formation of combined masking signals in the form of “white” noise for devices protection of speech information, composite coatings to level out the effects of a constant magnetic field on electronic products.
创造材料、技术和安全设备领域的研究与开发
介绍了基于粉末碳、箔和复合多层材料的微波电磁屏蔽的制造技术。介绍了其制造和屏蔽性能的技术方法,并根据制造技术、复合材料层的组成和交替情况,考虑了导致屏蔽性能提高的主要机制。研究表明,在 2-17 GHz 频率范围内,所考虑的屏蔽电磁辐射的反射系数值达到 (-20) dB。在 8.0-12.0 GHz 频段内,开发了反射特性低于 (-10.0) dB(低至 (-52.0) dB)的微波吸收器,并确定了用于此类微波吸收器的复合材料的电物理参数、成分和浓度。考虑了使用由 "白 "噪声和类语音信号组成的组合掩蔽信号以及 "白 "噪声作为掩蔽信号的语音信息主动保护系统。为解决语音信息保护问题,制定了评估语音清晰度时选择演讲者和听众的标准,以及在掩蔽声学噪声背景下进行语音清晰度实验研究的方法。介绍了基于碳纳米管和铁磁性材料纳米颗粒的纳米复合材料的形成技术,以提高自旋纹理在宏观距离上的一致性,提高电子产品对强磁场的安全程度和抗噪声能力。研究表明,在铁磁性纳米粒子达到一定浓度时,微磁参数会增加,从而确保有源元件在磁场中的高性能。在这种情况下,碳的作用被证明是决定性的。这些研究成果有望用于消声室的制造、用于分隔室内电子设备区域的隔板、用于保护人类免受微波范围内电磁辐射影响的产品、用于保护语音信息设备的 "白 "噪声形式的组合屏蔽信号的形成、用于消除电子产品上恒定磁场影响的复合涂层。
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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