吸波材料本质上是一种能量转换材料。
Nature of the electromagnetic wave (EMW) absorbing materials is the energy conversion.
本文阐述了电路模拟吸波材料的原理。
The principles of the circuit analogy absorber were explained.
研制吸波材料,必须进行介质参量的测量。
To research into and prepare absorbing materials, medium parameters must be measured.
经过后续改进,可以实现优良的吸波涂层。
If keeping improved, it can be successfully used in wave absorbing field.
提出了一种设计多层雷达吸波材料的方法。
In this paper, we present a method for designing multilayer-radar-absorbing material.
吸波材料的理论设计是吸波材料研究的重要环节。
Theoretical design is an important part of the research in microwave absorbing materials.
实验结果表明:此种吸波体具有良好的电磁性能。
The results indicate that the chiral microwave absorber gets a good performance.
雷达吸波材料是现代武器隐身技术的关键因素之一。
The radar absorption materials (RAM) are the key of stealth technique for modern weapons.
阳光通过收集器玻璃、塑料、金属或橡胶等吸波材料。
Sunlight through the collector glass, plastic, metal or rubber and other absorbing materials.
材料的等效电磁参数是计算设计吸波材料的重要数据。
The effective electromagnetic parameters are the imperative data to compute design absorbing materials.
着重阐述了透波和吸波机理以及它们的主要表征参数;
The mechanisms and main token parameters of microwave transmission and absorption are introduced.
另外,国产的吸波材料也将使其雷达反射截面得以降低。
The RCS will be reduced with Chinese-made signature-reduction paint.
就吸波材料与电磁波的相互作用及其损耗机理进行了阐述。
The basic absorption mechanism of the microwave - absorbing material was studied, and its interaction on the electromagnetic wave was also studied.
雷达吸波材料和吸波结构的使用是飞机隐身的一个重要措施。
The use of radar-absorbing material (RAM) and radar-absorbing structure (RAS) is an important measure for stealth aircraft.
研究了含平面等角螺旋天线阵列吸波复合材料的微波吸收特性。
Microwave absorbing properties of the composites containing the planar equiangular spiral antenna arrays were investigated.
适当的纤维长度和体积掺量是提高砂浆吸波性能的决定性因素;
Suitable fiber length and volume fraction are pacing factors of improving absorbing property of mortar.
对电路模拟吸波材料优于普通雷达吸波材料的原因进行了说明。
And the reasons of the properties of the circuit analogy absorber exceeding the ordinary radar absorbing materials were expatiated.
本文综述了吸波材料的研究现状,提出了吸波材料的发展趋势。
This paper reviews the status of radar absorbing materials, and pointed out the direction of research in the future.
由于多层吸波材料设计的复杂性,有必要设计专用的CAD工具。
Because of the complexity of designing for Multilayered microwave absorber, it requires special CAD tools.
这种纤维与环氧树脂复合制备的结构吸波材料具有良好的雷达吸波性能。
The structural radar absorbing materials composed of the fibers and epoxy resin have good radar absorbing properties.
这种纤维与环氧树脂复合制成的结构吸波材料对雷达波具有良好的吸收。
The radar absorbing structural materials composed of the SiC composite fibers and epoxy resin has good radar absorbing properties.
铁氧体是目前应用最广泛的一类吸波材料,具有典型的电磁波磁损耗机理。
Ferrite, a typical kind of magnetic absorbing materials, is one of the most important EMW absorbing materials.
因此,研究水泥基复合吸波材料在军事和民用方面都具有非常重要的意义。
Therefore it would have great significant to study the cement-based absorbing composites materials both in military and civil utilization.
雷达吸波材料的吸波性能通常以吸波材料对电磁波的功率反射系数来表示。
The absorbing property of radar absorbing material is usually expressed by the power reflection coefficient of the absorbing material toward the electromagnetic wave.
简述了吸波纤维在复合材料中的排布方式、长度和含量对材料吸波性能的影响。
The influences of the arrangement, length and content of the fibers in the composite on radar absorbing property were simply summarized.
合理利用材料的界面极化,可使材料的吸收频带大大加宽,提高材料的吸波性能。
Proper interface polarization of the material will enlarge the wave absorption frequency and improve the wave absorption performance.
采用空间回路网法计算得到填充吸波泡沫的碳纤维复合材料格栅结构的电磁散射性能。
The spatial network method is used to calculate the electromagnetic wave scattering characteristic of carbon fiber composite grid structures filled with Absorbing foams.
基于颗粒混合媒质的模型,本文讨论了复合铁氧体吸波材料介电常数和磁导率的计算方法。
Based on the model of granular media, the calculating method of permittivity and permeability for compound ferrite absorption materials is studied.
基于颗粒混合媒质的模型,本文讨论了复合铁氧体吸波材料介电常数和磁导率的计算方法。
Based on the model of granular media, the calculating method of permittivity and permeability for compound ferrite absorption materials is studied.
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