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1)  microwave ion source
微波离子源
1.
45GHz microwave ion source s extraction system at the Institute of Heavy Ion Physics, Peking University.
45GHz袖珍永磁微波离子源引出系统的一项改进,即在距该离子源永磁环9cm处加一个长为10cm的永磁透镜。
2.
Microwave coupling efficiency is an important parameter for microwave ion source, and has close relation with magnetic field strength and it s distribution.
微波耦合效率 (Pi-Pr) /Pi 是微波离子源的重要参数 ,它与磁场强度和分布关系密切 。
3.
And according to the demand of microwave ion source of intense neutron tube on magnetic field mode, we provided the design result and experiment data of multicusp field, double-magnet-ring field, field with transmiting magnet circuit, and makes .
根据强流中子管的特殊要求和微波离子源微波吸收及传输原理 ,设计出等离子腔结构 ,其对微波可无阻传输 ,对高电压有隔离作用 。
2)  Microwave plasma source
微波等离子体源
1.
Modeling of planar spiral inductively-coupled microwave plasma source;
平面螺旋电感耦合微波等离子体源的建模分析
3)  microwave micro-plasma source
微波微等离子体源
1.
The microwave micro-plasma source is of important application value in the industrial field.
微波微等离子体源在工业生产中有重要应用,可以产生可控的小尺寸放电,在生物MEMS灭菌消毒、小规模材料处理、微化学分析系统、微推进等领域中有广泛前景。
4)  MW-ECR Plasma Source
微波-ECR等离子体源
5)  low power microwave plasma source
小功率微波等离子体源
1.
The impedance matching of low power microwave plasma source was analyzed based on odd mode equivalent circuit and the interrelation between S parameter and microwave plasma impedance,and the discharges in various gas pressure were studied.
45 GHz小功率微波等离子体源,根据微带环缝谐振器的奇模等效电路,通过S参数与微波等离子体阻抗之间的关系,研究小功率微波等离子体源的阻抗匹配及其在不同气体条件下的放电规律。
6)  microwave plasma
微波等离子
1.
Using the mixture ambience of high pure hydrogen and high pure nitrogen as precursor,VO 2-x N y thin films with good thermal induced phase transition property were synthesized at low temperature by microwave plasma enhanced route using V 2O 5 as molecular precursors through coating film in glass slice.
选用V2O5为前驱物,通过在玻璃片上镀膜,利用高纯氢和高纯氮作为气源,采用微波等离子体增强法,在低温条件下合成了具有优良热致相变特性的氮杂二氧化钒(VO2-xNy)薄膜。
2.
Both conventional microwave and microwave plasma sintering technology have been involved to sinter ZnO based varistor.
采用常规微波和微波等离子对比烧结ZnO/Bi2O3系压敏电阻发现:两者均可快速成瓷,烧结时间由常规的20 h减少到45 min;烧结后,ZnO晶粒细小(约1μm)均匀,相比而言,等离子更有利于压敏电阻烧结。
3.
The step sintering of microwave heating and microwave plasma heating (SSMP)was proposed in this paper.
提出微波加热和微波等离子加热分步烧结方法(SSMP)。
补充资料:微波动力源
分子式:
CAS号:

性质:又称无电极放电管(electrodeless discharge tube)。原子荧光光谱分析中用的高强度无极放电光源。密封充有惰性气体的石英管,内置高纯待测元素的卤化物。用2450MHz微波激发发光,其发光强度比空心阴极光源强数百倍。

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