1)  microwave absorption spectrum
吸波图谱
2)  microwave absorption
吸波
1.
The effects of microwave absorption material SiC on the results of partial oxidation of methane to syngas under microwave irradiation;
吸波材料SiC对微波辐照下甲烷部分氧化制合成气的影响
2.
Study on the influence of precursor mixture ratio and calcination temperature on microstructure and microwave absorption properties of lithium zinc ferrites;
原料配比和煅烧温度对锂锌铁氧体微观结构和吸波性能的影响
3.
The effects of carbon black fraction and sample thickness on CB/ABS composites' microwave absorption and dielectric performance were studied.
通过热压方法制备了炭黑(CB)/丙烯腈-丁二烯-苯乙烯共聚物(ABS)连续导电介质吸波平板,研究了炭黑含量和厚度对CB/ABS连续导电介质介电常数和吸波效能的影响。
3)  wave absorbing
吸波
1.
Preparation of radar wave absorbing coating for camouflage mat;
伪装网雷达吸波涂层的研制
2.
Three different ways were proposed to improve the wave absorbing properties of SiC within the frequency ranges from 2GHz to 18GHz.
采用三种不同的方法对碳化硅粉在2-18GHz范围的吸波性能进行了改进。
4)  absorption
吸波
1.
8vol% ITO / wax composite exhibited good microwave absorption property(reflection loss <-10dB) in the frequency rang of 4.
56~11GHz的反射率低于-10dB,有好的吸波性能。
5)  wave absorption
吸波
1.
Design and wave absorption properties of a slab containing randomly distributed discrete macro-inclusions;
含随机分布散射颗粒的吸波体设计和性能分析
2.
Electromagnetic Wave Absorption Capacity of CB/MnO_2/ABS Slab Composite;
CB/MnO_2/ABS复合平板材料的吸波效能
3.
The research prospect of advanced wave absorption concrete is predicted, the performance requirement of wave absorption is analyzed, thirty five scientific questions of eight species in research of advanced wave absorption concrete.
预言了先进吸波混凝土的研制前景,分析了吸波混凝土的性能要求,提出了先进吸波混凝土研究中的8类35个科学问题。
6)  absorbing
吸波
1.
Reflective properties of HIS loading resistance and finite conductivity patch were analyzed by HFSS electromagnetic simulation software,and the absorbing effects of square patch HIS and dentiform patch HIS with loss were compared.
研究了带有损耗的高阻表面,使用HFSS电磁仿真软件仿真分析了电阻加载和有限电导率贴片高阻表面的反射特性,并对带有损耗的普通方形贴片与齿化贴片高阻抗表面的吸波效果进行了对比。
2.
Power reflectivity measured by the far field radar cross-section method is taken as the characteristic index of absorbing property.
采用远场雷达散射截面法测试的功率反射率为表征吸波性能的指标,研究了素砂浆的吸波性能以及钢纤维、碳纤维的长度和掺量对其吸波性能的影响;同时根据所推导的隐身效能评价公式比较了两种纤维复合砂浆的隐身能力。
参考词条
补充资料:铁氧体吸波材料(ferrite wave absorption materials)
分子式:
CAS号:

性质:又称铁氧体吸波材料(ferrite wave absorption materials)。利用铁氧体磁损耗吸收电磁波原理而制成的一类铁氧体材料。系将吸收的电磁波能量转变为热能而被驱散。主要有锰-锌系、镍-锌系的六角晶系铁氧体或他们的复合物构成的吸收材料。六角晶系铁氧体(如Co2Y,Cu2Y,Zn2Y,CO2Zn等)的饱和磁化强度0.119~0.267T,初始磁导率(1~27)4π×10-1mT/A,居里温度130~410℃。这类材料可分为:(1)结构型。以相应的金属氧化物制成的铁氧体整体烧结成一定形状的器件;(2)涂敷型。用铁氧体颗粒作吸波剂,与黏结剂混合制成吸波介质材料。吸收层厚度为几个毫米。为拓宽吸收频率范围,可把这类铁氧体材料粉末掺入氯丁橡胶或水泥或泡沫塑料等材料中,制成要求的形状。可用于制作回波隔离室的墙壁、飞机和导弹抗跟踪吸收层、微波系统的匹配负载等。

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