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Featured researches published by Liu Yanwen.


Scientia Sinica Informationis | 2015

Study on emission properties of the nanopatical films

Liu Yanwen; Wang Xiaoxia; Tian Hong; Zhu Hong; Zhang Mingchen; Li Yutao; Meng Mingfeng; Lu Yuxin; Fang Rong

Microwave vacuum devices are used in a wide variety of areas, such as radar, space technology, electron accelerators and high-power microwave weapons at the future military frontiers. The cathodes, i.e., the electron sources, are the cores of the high-power microwave sources. Nanoparticles have many physical and chemical properties that their corresponding bulk materials do not have, such as surface effect and small-size effect, etc. Based on our previous work on the M-type cathode, we have proposed a strategy to develop a new type cathode. We deposited a layer of thin film of metal nanoparticles on the traditional Ba-W dispenser cathode. Thus the N-type cathode demonstrated some features different from the traditional M-type cathode. The study of the electron emission properties of this N-type cathode would promote the understanding on the electron emission and expand the applications of the nanomaterials. Nanoparticle thin films were grown by magnetron sputtering at room temperature. The results showed that the particle size of the films depended on the deposition rate in the nucleation stage of the films. The effect of thin film characteristics on thermionic emission of dispenser cathodes has been investigated. The chemical components of the vacuum background, the evaporants from an N-type cathode and an M-type cathode were respectively analyzed using a time of flight mass spectrometer (ToFMS). The results have proved that the ToFMS is one of the best tools for studying the evaporation phenomena of impregnated cathodes. Finally, the electron emission performance of the N-type cathodes was studied. I-V characteristics showed that the DC emission current density was 30 A/cm2 and its lifetime was 600 h. The pulse emission current density was 108 A/cm2 and its lifetime was 1500 h.


Archive | 2016

Space traveling wave tube, collector thereof and preparation method of the connector

Liu Yanwen; Wang Xiaoxia; Tian Hong; Zhu Hong; Meng Mingfeng; Zhao Li


Archive | 2014

Method for removing copper from tungsten sponge matrix

Liu Yanwen; Wang Xiaoxia; Zhu Hong; Zhang Mingchen; Li Yutao; Xu Wei; Lu Yuxin; Fang Rong


Archive | 2014

Method for preparing heat element for heated cathode

Liu Yanwen; Meng Mingfeng; Xu Zhenying; Zhu Hong; Deng Feng; Zhang Lianzheng; Xu Wei; Xu Qiang; Yang Dan; Han Jiao


Archive | 2017

Collector electrode, preparation method thereof, space traveling wave tube and preparation method thereof

Liu Yanwen; Tian Hong; Zhu Hong; Meng Mingfeng; Zhang Mingchen; Li Yutao


Archive | 2017

Preparation method of compound pipe shell and helix traveling wave tube

Liu Yanwen; Tian Hong; Zhu Hong; Meng Mingfeng; Zhang Mingchen; Li Yutao


Wuli Xuebao | 2016

電子真空デバイスのための金属材料蒸発特性【JST・京大機械翻訳】

Liu Yanwen; Wang Xiaoxia; Lu Yuxin; Tian Hong; Zhu Hong; Meng Mingfeng; Zhao Li


Archive | 2016

Method, device and system for degassing of part of microwave vacuum electronic device

Liu Yanwen; Tian Hong; Zhu Hong; Meng Mingfeng; Zhao Li


Archive | 2014

Cathode emission testing apparatus and system for microwave vacuum electronic devices

Liu Yanwen; Zhu Hong; Li Yutao; Tian Hong; Meng Mingfeng; Han Jiao; Deng Feng; Liu Pukun


Archive | 2013

Electronic gun thermionic cathode pre-processing method

Liu Yanwen; Deng Feng; Liu Pukun; Zhang Lianzheng; Xu Ke; Zhang Wenrong

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Meng Mingfeng

Chinese Academy of Sciences

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Zhu Hong

Chinese Academy of Sciences

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Tian Hong

Chinese Academy of Sciences

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Li Yutao

Chinese Academy of Sciences

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Wang Xiaoxia

Chinese Academy of Sciences

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Liu Pukun

University of Electronic Science and Technology of China

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Lu Yuxin

Chinese Academy of Sciences

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Zhang Mingchen

Chinese Academy of Sciences

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Fang Rong

Chinese Academy of Sciences

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Ding Yaogen

Chinese Academy of Sciences

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