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A method to calculate and counterbalance the inertia force of slider-crank mechanisms in high-speed presses 被引量:1
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作者 Jun Wang1 ,Sheng-dun Zhao1 ,Hu-shan Shi1 ,Chun-jian Hua21. School of Mechanical Engineering,Xi’an Jiaotong University,Xi’an 710049 2. School of Mechanical Engineering,Southern Yangtze University,Wuxi 214122,China. 《Journal of Pharmaceutical Analysis》 SCIE CAS 2009年第3期141-148,共8页
A new method to calculate and counterbalance the inertia force of slider-crank mechanisms in high-speed mechanical presses was put forward. By analyzing the kinematic characteristics of a center-located slider-crank m... A new method to calculate and counterbalance the inertia force of slider-crank mechanisms in high-speed mechanical presses was put forward. By analyzing the kinematic characteristics of a center-located slider-crank mechanism whose crank rotates at a constant angular velocity,the kinematic parameters of the slide,connecting rod and crank were formulated approximately. On the basis of the results above,three inertia forces and the input moment in the mechanism during its idle running were investigated and formulated by dynamic analysis. A verification experiment was performed on a slider-crank mechanism at a high-speed press machine. The forces derived from the established formulas were compared respectively with those obtained by the ADAMS software and the classical method of connecting rod mass substitution. It was experimentally found that the proposed formulas have an improved performance over related earlier techniques. By use of these results,a 1 000 kN 1 250 rpm four-point high-speed press machine was designed and manufactured. The slide of this press is driven by four sets of slider-crank mechanisms with symmetrical layout and opposite rotation directions to counterbalance the horizontal inertia forces. Four eccentric counterbalance blocks were designed to counterbalance the vertical force after their mass and equivalent eccentric radius were formulated. The high-speed press machine designed by the proposed counterbalance method has worked with satisfactory performance and good dynamic balance for more than four years in practical production. 展开更多
关键词 slider-crank mechanism KINEMATICS inertia force counterbalance high-speed press
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Investigation of Cross-Correlation Characteristics for Multi-Link Channels in High-Speed Railway Scenarios 被引量:1
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作者 Tao Zhou Cheng Tao +1 位作者 Liu Liu Kai Liu 《China Communications》 SCIE CSCD 2018年第8期108-117,共10页
This paper investigates the cross-correlation characteristics of large-scale parameters(LSPs) and small-scale fading(SSF) for high-speed railway(HSR) multilink propagation scenarios, based on realistic measurements co... This paper investigates the cross-correlation characteristics of large-scale parameters(LSPs) and small-scale fading(SSF) for high-speed railway(HSR) multilink propagation scenarios, based on realistic measurements conducted on Beijing to Tianjin HSR line in China. A long-term evolution-based channel sounding system is utilized in the measurements to obtain the channel data. By applying a proposed time-delay based dynamic partition method, multi-link channel impulse responses are extracted from the raw channel data. Then, the statistical results of LSPs, including shadow fading, K-factor, and root-mean-square delay spread are derived and the cross-correlation coefficients of these LPSs are calculated. Moreover, the SSF spatial correlation and cross-correlation of SSF are analyzed. These results can be used to exploit multi-link channel model and to optimize the next-generation HSR communication system. 展开更多
关键词 high-speed railway communications multi-link channel CROSS-CORRELATION large-scale parameters small-scale fading.
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