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Radio-Absorbing Composite Materials Based on La0.7Sr0.3MnO3

机译:基于LA0.7SR0.3MNO3的无线电吸收复合材料

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In the frequency range 3.2-12 GHz the absorption of microwave energy was measured by new composite materials, which are xLSMO/yGeO2/(1-x-y)NaF (LiF) glass ceramics, where x, y are the mass fractions of the composite components, x =0.7-0.95 , y=0.05-0.20. Conductivity measurements were performed, structural and microstructural features of materials were studied. It has been found that concentrations of germanium oxide and fluorides significantly affect the degree of absorption of microwave energy by samples. Absorption spectra close to linear ones at levels from 0-3 dB to 12-14 dB were obtained in the whole investigated frequency range for various materials. Some increase in the absorption (5-10%) of energy by these composite materials under the influence of a weak (H≈300 kOe) constant magnetic field was revealed. The spectra of the integral radiation of the electric field were measured with the composites with the lowest conductivity. Prospective areas of work have been outlined for obtaining broadband radio-absorbing composite materials.
机译:在频率范围内3.2-12 GHz通过新的复合材料测量微波能量,其是XLSMO / YGOO2 /(1-XY)NAF(LIF)玻璃陶瓷,其中X,Y是复合组分的质量分数,x = 0.7-0.95,y = 0.05-0.20。进行了电导率测量,研究了材料的结构和微观结构特征。已发现氧化锗和氟化物的浓度显着影响微波能量通过样品的吸收程度。在各种研究的整个研究频率范围内获得靠近线性的吸收光谱从0-3dB至12-14dB的水平获得。通过这些复合材料在弱(H≈300KOE)恒定磁场的影响下通过这些复合材料的吸收(5-10%)的一些增加。用具有最低电导率的复合材料测量电场的整体辐射的光谱。已经概述了获得宽带无线吸收复合材料的预期工作领域。

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