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Dive into the research topics where Zhou Yongjiang is active.

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Featured researches published by Zhou Yongjiang.


Chinese Physics B | 2013

Design and realization of a magnetic-type absorber with a broadened operating frequency band

Zhou Yongjiang; Pang Yong-Qiang; Cheng Haifeng

In this paper, we present an efficient method to obtain absorbers with broadened operating frequency bands. They are accomplished by using conventional magnetic absorbing materials (MAMs) in the forms of array and mesh structures, which are similar to those in the case of a frequency selective surface. The proposed approach is verified not only by simulations but also by experimental results under the normal incidence at microwave frequencies. Moreover, the wideband absorber is lighter than the conventional magnetic absorber. These results indicate that our proposed absorbing structures can be used for designing good electromagnetic absorbers.


Journal of Wuhan University of Technology-materials Science Edition | 2007

Effect of surface modification on microwave absorbing properties of magnetic metal fibers

Xie Wei; Cheng Haifeng; Chu Zengyong; Zhou Yongjiang; Tang Gengping; Xu Yongping

In order to avoid forming an electrical conductive network due to surface connections, the magnetic metal fibers were coated with SiO2 for surface modification by the sol-gel process. The microstructure, composition and electromagnetic characteristics of SiO2-coated and uncoated metal fibers were studied using SEM, EDAX, and a voter network analyzer. The reflectivity was simulated using the RAMCAD software. The electromagnetic parameters and absorption properties of SiO2-coated metal fibers were improved greatly due to optimal impendence matching and the electric conductivity decreased, compared to those of uncoated materials.


Materials & Design | 2009

Effect of FSS on microwave absorbing properties of hollow-porous carbon fiber composites

Xie Wei; Cheng Haifeng; Chu Zengyong; Zhou Yongjiang; Liu Haitao; Chen Zhao-hui


Journal of Applied Polymer Science | 2013

Multicolor electrochromism of low‐bandgap copolymers based on pyrrole and 3,4‐ethylenedioxythiophene: Fine‐tuning colors through feed ratio

Zhang Zhaoyang; Tao Yijie; Xu Xiao-qian; Zhou Yongjiang; Cheng Haifeng; Zheng Wenwei


Journal of Electroanalytical Chemistry | 2013

Multielectrochromic copolymers of 3,4-ethylenedioxythiophene and naphthalene prepared via electropolymerization in boron trifluoride diethyl etherate

Tao Yijie; Cheng Haifeng; Zhang Zhaoyang; Xu Xiao-qian; Zhou Yongjiang


Archive | 2013

Radar-infrared combined stealth material and preparation method thereof

Cheng Haifeng; Tian Hao; Liu Haitao; Zhou Yongjiang


Archive | 2014

Three-dimensional alumina fiber fabric reinforced oxide ceramic and preparation method thereof

Liu Haitao; Cheng Haifeng; Wang Yi; Zu Mei; Zhou Yongjiang; Wang Jun


Synthetic Metals | 2012

Electrosynthesises and characterizations of copolymers based on thiophene and 3,4-ethylenedioxythiophene in boron trifluoride diethyl etherate

Zhang Zhaoyang; Tao Yijie; Xu Xiao-qian; Zhou Yongjiang; Cheng Haifeng; Zheng Wenwei


Archive | 2014

Radar wave absorbing ceramic with capacitive cycle structure and preparation method thereof

Cheng Haifeng; Zhou Yongjiang; Li Zenggang; Chu Zengyong; Kang Yue


Archive | 2015

Infrared stealth film capable of achieving low emissivity in band range from 8 microns to 14 microns selectively, and preparation method for infrared stealth film

Peng Liang; Cheng Haifeng; Li Junsheng; Zheng Wenwei; Zhou Yongjiang; Liu Haitao; Zhang Chaoyang

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Cheng Haifeng

National University of Defense Technology

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Liu Haitao

National University of Defense Technology

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Zheng Wenwei

National University of Defense Technology

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Chu Zengyong

National University of Defense Technology

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Tian Hao

National University of Defense Technology

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Zhang Chaoyang

National University of Defense Technology

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Wang Jun

University of Defence

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Tang Gengping

National University of Defense Technology

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Tao Yijie

National University of Defense Technology

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Xie Wei

National University of Defense Technology

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