• This dissertation commits itself to develop high quality microwave absorbing materials.

    论文的研究背景是高性能电磁波吸收材料开发

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  • Theoretical design is an important part of the research in microwave absorbing materials.

    波材料理论设计吸波材料研究重要环节

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  • On the other hand, microwave absorbing materials are being used to confront radar detection in military fields.

    一方面,军用隐身技术迫切需要高性能的雷达波吸收材料

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  • Various kinds of structural microwave absorbing materials and structural model designs are presented in this paper.

    文中结构材料种类结构型式设计进行了讨论,并提出结构吸波材料的研究趋势。

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  • Conjugated Schiff bases have a potential possibility in producing microwave absorbing materials because of its adjustable electrical conductivity.

    共轭席夫导电且电导率可调具有制备材料潜在可能性

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  • This paper describes measurement principle, measurement methods and correlative count formula for the launching rate of microwave absorbing materials.

    叙述微波吸收材料发射测量原理、测量方法有关修正计算式。

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  • The modified glass bead can be used in electromagnetic shielding or microwave absorbing materials, and the applicationareas are widened. The application prospects were also analyzed.

    改性后的玻璃微珠应用电磁屏蔽材料的制备,拓宽了其应用范围,分析了其应用前景

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  • Microwave absorbing materials have been widely in stealth technology and in electro-magnetic compatibility (EMC) technology, and they are researching hotspot in these technology field.

    材料军用民用领域有着广泛的应用,已经成为各国军事装备隐身民用防电磁辐射等技术领域研究热点

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  • Various kinds of structural microwave absorbing materials and structural model designs are presented in this paper. The future research tendency regarding these materials is pointed out.

    文中结构材料种类结构型式设计进行了讨论,并提出结构吸波材料的研究趋势

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  • The main influence factors are water-content coefficient, capacity factors, mass and microwave absorbing materials, and the capability of every factor is obtained by analyzing the results.

    研究的影响因素主要包括含水率、质量功率波介质,经过分析得到了各个因素影响微波加热能力

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  • This paper reviewed the realization methods of radar camouflage from five aspects, shaping design, absorbing materials, jamming, offset and microwave propagation indicating technique.

    外形设计吸波材料、对消、干扰微波传播指示技术五个方面雷达隐身技术实现方法进行了综述

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  • Parameters of electromagnetic properties and absorbing microwave capability of the materials were determined.

    测试了它们有关电磁特性吸收微波性能参量

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  • The mechanism and excellent properties of nanometer materials as microwave absorbing agents are presented.

    介绍了纳米材料作为微波吸收基本原理及其优异的吸波性能

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  • In this paper, the application of microwave photonic crystals in radar absorbing materials (RAM) is studied and a new RAM using UC-PBG is described.

    研究微波光子晶体雷达吸收材料应用,提出了一种应用uc - P BG新型雷达吸收材料。

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  • Based on the structure design of microwave stealth material, the absorbing properties of bi-layer carbon cluster-like microwave stealthy materials with different thickness have been studied.

    通过微波隐身材料结构设计,采用密度较小原料,制备得到具有良好吸波性能双层结构碳团簇型微波隐身涂层材料。

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  • Structural radar absorbing materials (SRAMs) can not only absorb microwave but also bear loading, which are usually made up of matrix resin and microwave-absorber.

    结构型雷达材料RAM一种兼具吸波与承载功能材料,一般吸波剂基体树脂复合成。

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  • Microwave absorbing properties of circuit analog materials produced by carbon fiber were studied. The composites showed excellent results at the condition of this arrangement.

    研究了正交排布碳纤维吸波复合材料微波吸收特性结果表明这种类似电路模拟材料排布方式可使材料获得优异的吸波性能。

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  • When the as-formed mullite ceramic is used as an impedance transfer layer of the microwave absorbing material, it greatly enhances the microwave absorbing efficiency of absorbing materials.

    来石陶瓷作为材料阻抗变换,能够大幅度提高材料吸波性能

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  • With the widespread use of microwave in the field such as military and civil application, microwave-absorbing materials have been received considerable attention.

    随着现代微波技术军事民用领域得到越来越广泛应用材料受到高度重视。

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  • WANG Chao. Preparation and microwave absorbing properties of modified carbonyl iron powder composite materials [d]. Harbin: Harbin Institute of Technology, 2008.

    [15]王超改性羰基复合材料制备吸波性能[d]。哈尔滨:哈尔滨工业大学,2008。

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  • WANG Chao. Preparation and microwave absorbing properties of modified carbonyl iron powder composite materials [d]. Harbin: Harbin Institute of Technology, 2008.

    [15]王超改性羰基复合材料制备吸波性能[d]。哈尔滨:哈尔滨工业大学,2008。

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