期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Influence of Velocity Overshoot Effect on High Frequency Perform- ance of AlGaAs / GaAs HBT's
1
作者 Xu Jun, Liu Youbao and Huang Chang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 1992年第4期14-15,18-2+6,共5页
The semiclassical transport equations are used to study the high frequency performance of AlGaAs / GaAs HBTs. Electron velocity overshoot effect and its influence on the cut off frequency characteristics of AlGaAs / G... The semiclassical transport equations are used to study the high frequency performance of AlGaAs / GaAs HBTs. Electron velocity overshoot effect and its influence on the cut off frequency characteristics of AlGaAs / GaAs HBTs with different collector design parameters are analyzed and discussed. 展开更多
关键词 HBT influence of Velocity Overshoot Effect on High frequency Perform high ance of AlGaAs
在线阅读 下载PDF
Radiation of Ultra Low Frequency Electromagnetic Waves from Atmosphere under the Influence of Strong Shock Waves
2
作者 A. R. Aramyan S. A. Aramyan +2 位作者 S. G. Bilen L. Sh. Grigoryan H. F. Khachatryan 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第3期39-41,共3页
We present preliminary results from the experimental investigation of the response of the atmosphere due to the impact of powerful shock waves. The response is evidenced as ultra low frequency electromagnetic wave rad... We present preliminary results from the experimental investigation of the response of the atmosphere due to the impact of powerful shock waves. The response is evidenced as ultra low frequency electromagnetic wave radiation at frequency of 2-5 kHz and in duration of 3 7s. We hypothesize that this radiation appears due to the following process: the shock wave ionizes the neutral particles in the air and these charged and neutral particles continue their vertical motion, which forms in the trail of the shock wave. Such motion can cause the cyclotron-like radiation measured. 展开更多
关键词 Radiation of Ultra Low frequency Electromagnetic Waves from Atmosphere under the influence of Strong Shock Waves
原文传递
Numerical analysis of elastic coated solids in line contact 被引量:2
3
作者 王廷剑 王黎钦 +1 位作者 古乐 赵小力 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2470-2481,共12页
A line contact model of elastic coated solids is presented based on the influence coefficients(ICs) of surface displacement and stresses of coating-substrate system and the traditional contact model. The ICs of displa... A line contact model of elastic coated solids is presented based on the influence coefficients(ICs) of surface displacement and stresses of coating-substrate system and the traditional contact model. The ICs of displacement and stresses are obtained from their corresponding frequency response functions(FRF) by using a conversion method based on fast Fourier transformation(FFT). The contact pressure and the stress field in the subsurface are obtained by employing conjugate gradient method(CGM) and discrete convolution fast Fourier transformation(DC-FFT). Comparison of the contact pressure and subsurface stresses obtained by the numerical method with the exact analytical solutions for Hertz contact is conducted, and the results show that the numerical solution has a very high accuracy and verify the validity of the contact model. The effect of the stiffness and thickness of coatings is further numerically studied. The result shows that the effects on contact pressure and contact width are opposite for hard and soft coatings and are intensified with the increase of coating thickness; the locations of crack initiation and propagation are different for soft and hard coatings; the risk of cracks and delaminations of coatings can be brought down by improving the lubrication condition or optimizing the non-dimensional parameter h/bh. This research offers a tool to numerically analyze the problem of elastic coated solids in line contact and make the blindness and randomness of trial-type coating design less. 展开更多
关键词 coating-substrate system contact pressure stress field frequency response function influence coefficient
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部