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首页> 外文期刊>Coatings >Dielectric Permittivity Model for Polymer–Filler Composite Materials by the Example of Ni- and Graphite-Filled Composites for High-Frequency Absorbing Coatings
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Dielectric Permittivity Model for Polymer–Filler Composite Materials by the Example of Ni- and Graphite-Filled Composites for High-Frequency Absorbing Coatings

机译:聚合物填料复合材料的介电介电常数通过实施例,用于高频吸收涂料的镍和石墨复合材料

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摘要

The suppression of unnecessary radio-electronic noise and the protection of electronic devices from electromagnetic interference by the use of pliable highly microwave radiation absorbing composite materials based on polymers or rubbers filled with conductive and magnetic fillers have been proposed. Since the working frequency bands of electronic devices and systems are rapidly expanding up to the millimeter wave range, the capabilities of absorbing and shielding composites should be evaluated for increasing operating frequency. The point is that the absorption capacity of conductive and magnetic fillers essentially decreases as the frequency increases. Therefore, this paper is devoted to the absorbing capabilities of composites filled with high-loss dielectric fillers, in which absorption significantly increases as frequency rises, and it is possible to achieve the maximum frequency selective of absorption due to electromagnetic and electromechanical resonances.
机译:提出了通过使用基于聚合物或砂填充的聚合物或橡胶的柔韧高度微波辐射吸收复合材料的电磁干扰来抑制不必要的无线电 - 电子噪声和从电磁干扰的保护。 由于电子设备和系统的工作频带快速扩展到毫米波范围,因此应评估吸收和屏蔽复合材料的能力以增加工作频率。 关键是随着频率的增加,导电和磁性填充物的吸收能力基本降低。 因此,本文致专用于填充有高损耗介电填料的复合材料的吸收能力,其中频率升高,吸收显着增加,并且可以实现由于电磁和机电谐振引起的吸收最大选择性。

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