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1)  lossy medium
损耗式媒介
2)  lossy media
损耗媒质
1.
It is found that the ordinary boundary conditions of harmonic electromagetic fields at interface of lossy media may not be satisfied simultaneously,which is due to that the different damping terms between the two media may lead the flux at Gauss surface and circumfluence along close loop of electromagetic fields near interface to be no longer harmonic.
通常的谐变电磁场边界条件方程在损耗媒质界面往往不能同时成立,这是因为界面两边媒质不同的损耗,可导致界面处电磁场相关的通量和环量不再是谐变函数。
3)  dielectric loss
介电损耗
1.
Progress in dielectric loss of microwave dielectric ceramics;
微波介质陶瓷的介电损耗研究进展
2.
The Study on Microwave Dielectric Loss of Al_2O_3 Ceramics Modified by Y_2O_3;
Y_2O_3改性Al_2O_3陶瓷微波介电损耗研究
3.
Research on the ordering and dielectric loss in A(B′B″)O_3 complex perovskite
A(B′B″)O_3型钙钛矿材料中有序结构与介电损耗的研究
4)  dielectric dissipation
介质耗损
5)  lossy medium
损耗介质
1.
New lossy medium is the most important part in the research of Radar Absorbing Materials (RAM).
制备了β Ni(OH) 2 、β Ni(OH) 2 Co和β FeOOH纳米粉末作为新型损耗介质 ,测量了其频率反射特性。
6)  loss substance
损耗介质
1.
The current microwave-absorbing agents are classified,and many materials such as graphite,a- cetylene black,carbon fiber,SiC fiber,iron oxide and so on,as loss substance in radar-absorbing materials are re- viewed.
对目前存在的微波吸收剂进行分类,并综述了石墨、乙炔炭黑、碳纤维、碳化硅纤维、铁氧体等作为常见吸波材料损耗介质的国内外最新研究进展及发展趋势。
2.
The classification,absorbing properties and mechanism of some loss substances in RAM are reviewed.
综述了吸波材料(RAM)中常用损耗介质/吸收剂的种类、性能特点和吸收机理。
补充资料:介电损耗
分子式:
分子量:
CAS号:

性质:表示绝缘材料(如绝缘油料)质量的指标之一。绝缘材料(如变压器油)在电压作用下所引起的能量损耗。介电损耗愈小,绝缘材料的质量愈好,绝缘性能也愈好。通常用介电损耗角正切衡量。工业频率下的介电损耗角正切一般用西林电桥(高压电桥)测定。

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