Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Sheng-Lei Xiao"'
Publikováno v:
Materials Science Forum. :113-118
This paper analyzed the serrated chip formation process and mechanism in high-speed milling of nickel-based superalloy GH706. Firstly, analyzed two theories of serrated chip formation: cyclical fracture theory and adiabatic shear theory. Secondly, us
Publikováno v:
Key Engineering Materials. :258-263
The high temperature strength of Ni-based superalloys coupled with excellent corrosion resistance make them ideal for aerospace applications. However, the difficulty in finish machining superalloys with the carbide tools presents the short tool-life.
Autor:
Dai Yongsheng, Shaobo Chen, Lijie Wang, Li Xu, Cong Zhou, Qiushan Yu, Xi Chen, Bingqing Dai, Hong Zhang, Jian Yang, Sheng-Lei Xiao
Publikováno v:
2010 International Symposium on Signals, Systems and Electronics.
This paper presents the results of an antenna switch module integrating a switch (SP9T) and two low-pass filters for harmonic rejection on a low temperature co-fired ceramic (LTCC) substrate. This contributes not only to reduce the size and weight, b
Autor:
Yuhong Guo, Youfang Yao, Wen-Kan Zhou, Lijie Wang, Guangqiang Fu, Dai Yongsheng, Jie Zhang, Sheng-Lei Xiao, Bao-Shan Li, Shaobo Chen, De-Long Lu
Publikováno v:
2010 International Conference on Microwave and Millimeter Wave Technology.
A miniaturized and high stopband rejection bandpass filter(BPF) with three finite transmission zeros is presented in this paper. The BPF with a central frequency of 3.2 GHz and 200 MHz bandwidth is implemented in a novel distributed stripline configu
Autor:
Yuhong Guo, Sheng-Lei Xiao, Wen-Kan Zhou, Youfang Yao, Jie Zhang, Xiong-Xin Tang, Guangqiang Fu, Dai Yongsheng
Publikováno v:
2010 International Conference on Microwave and Millimeter Wave Technology.
In this paper, the design of miniaturized low-pass filter in a Low Temperature Co-fired Ceramic(LTCC) Technology is presented. The pass-band of the low-pass filter is from 900MHz to 1450MHz. The capacitor is constructed by multilayer MIM(Mental-Insul
Autor:
Yuhong Guo, Xiong-Xin Tang, Wen-Kan Zhou, Jie Zhang, Lijie Wang, Guangqiang Fu, Sheng-Lei Xiao, Wen-Ming Xie, Dai Yongsheng, Youfang Yao, Yuan-Yun Hu, Wei-Huang, Shaobo Chen
Publikováno v:
2010 Asia-Pacific International Symposium on Electromagnetic Compatibility.
This letter outlines the design and manufacture of a UHF-band miniaturized band-pass filter realized by low-temperature cofired ceramic (LTCC) technology for super heterodyne microwave receiver applications. A distinct feature of this filter is the s
Autor:
Bao-Shan Li, Lijie Wang, Guangqiang Fu, Youfang Yao, Jie Zhang, Wen-Kan Zhou, Yongsheng Dai, Sheng-Lei Xiao, Yuan You, Yuhong Guo, Shaobo Chen, De-Long Lu
Publikováno v:
2009 IEEE International Symposium on Radio-Frequency Integration Technology (RFIT).
A miniaturized and high stopband rejection bandpass filter(BPF) with three finite transmission zeros is presented in this paper. The BPF with a central frequency of 3.4 GHz and 200 MHz bandwidth is implemented in a novel distributed stripline configu
Autor:
Yuhong Guo, Yongsheng Dai, De-Long Lu, Youfang Yao, Shao-Bao Chen, Wen-Kan Zhou, Sheng-Lei Xiao, Zhonghua Ye, Jie Zhang, Guangqiang Fu
Publikováno v:
2009 IEEE Electrical Design of Advanced Packaging & Systems Symposium (EDAPS).
This paper presented a design and simulation result of a miniaturized complementary diplexer realized by low-temperature co-fired ceramic (LTCC) technology. The diplexer consisted of two pass-bands, a central frequency of 1.175GHz with bandwidth of 4
Autor:
Yong-Sheng Dai, Sheng-Lei Xiao, Shao-Bo Chen, Bing-Qing Dai, Li-Jie Wang, Li Xu, Cong Zhou, Qiu-Shan Yu, Hong Zhang, Jian Yang, Xi Chen
Publikováno v:
2010 International Symposium on Signals Systems & Electronics (ISSSE); 2010, p1-4, 4p
Autor:
Yong-Sheng Dai, Yu-Hong Guo, Xiong-Xin Tang, Yuan-Yun Hu, Wen-Ming Xie, Wei Huang, Sheng-Lei Xiao, Jie Zhang, Guang-Qiang Fu, Wen-Kan Zhou, You-Fang Yao, Shao-Bo Chen, Li-Jie Wang
Publikováno v:
2010 Asia-Pacific Symposium on Electromagnetic Compatibility (APEMC); 2010, p1366-1369, 4p