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1)  compatible absorbing coating
兼容吸波涂层
2)  Compatible coating
兼容型涂层
3)  RAC [英][,ɑ:r eɪ 'si:]  [美]['ɑr 'e 'si]
吸波涂层
1.
In addition,the emphasis was pay on the effect of absorber,bonder and coupling agent on mechanical properties of radar absorbing coating(RAC),in order to get an effective approach to improve the bonding interface between coating and substrate.
基于一般涂层的界面结合机理及其应力模型,分析了不同方向应力对涂层剥落的影响,指出了吸波涂层与基体的界面结合机理是分子键结合和机械结合的综合,其剥落主要是由剥离应力和剪应力引起的;此外,还重点分析了吸收剂、粘结剂和偶联剂对吸波涂层力学性能的影响,指出了改善吸波涂层结合界面的可能途径。
2.
Mechanical properties of room temperature cured radar absorbing coatings(RAC), such as tensile strength,impact strength and flexibility, are obviously improved with adding coupling agents By way of SEM and SAM,the effect mechanism of coupling agents on mechanical properties of RAC is discusse
研究发现, 偶联剂的加入使得常温固化吸波涂层力学性能, 如拉伸强度、冲击强度和柔韧性得以明显改善。
4)  microwave absorbing coating
吸波涂层
1.
This article is concerning the lightweight microwave absorbing coating containing carbonyl iron powder(CIP).
研究了以羰基铁粉为吸收剂的吸波涂层的轻型化问题。
2.
Microwave Absorbing coatings with different thickness were prepared by fiber X as the Absorbing agent,and the reflecting attenuations of the radar wave were researched.
采用X纤维为吸波涂料的吸收剂,制作不同厚度的吸波涂层,测试相应的雷达波反射衰减值。
5)  absorbing coat
吸波涂层
1.
The impact of magnetizing treatment on the absorbing property of the absorbing coat;
磁化处理对吸波涂层吸波性能的影响
6)  radar absorbing coatings
吸波涂层
1.
Oblique incidence performance of radar absorbing coatings(RAC) was analyzed Based on the investigating the reflectivity of RAC at different angles of incidence, the importance of the performance of perpendicular polarization was presented here while RAC was used in aircraft engine duct
简要分析了吸波涂层 (RAC)的斜入射特性 ,研究了几种吸波涂层在不同入射角 (θi)下的吸波性能 ,指出在常规进气道等凹型腔体中使用RAC的主要要求是提高涂层的垂直极化性
2.
Phenoxy resin was used as binders of radar absorbing coatings(RAC).
选用酚氧树脂作为吸波涂层(RAC)粘结剂,研究了溶剂、分子量、固化剂对RAC主要力学与物化性能的影响。
补充资料:电磁波吸收涂层
分子式:
CAS号:

性质:可吸收γ射线、X射线、紫外线、可见光、红外线、微波和无线电波等电磁波的涂层。最常指的是微波吸收涂层和无线电波吸收涂层。常用的微波、无线电波吸收材料有碳、金属粉、氧化铝、钛酸钡、氧化铁等。电磁波吸收涂层在军事上可用作隐身涂层,使雷达发现不了目标;在民用领域可应用于微波通信,控制电磁波的反射。

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