Ma Xiuzhen
Harbin Engineering University
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Featured researches published by Ma Xiuzhen.
Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering | 2015
Tian Bingqi; Fan Liyun; Ma Xiuzhen; Qaisar Hayat; Song Enzhe
A common-rail system can satisfy both diesel engine emissions legislation and fuel economy by flexibly regulating the injection pressure, the injection timing, the injection duration and the injection rate. Variations in the parameters of the common-rail system influence the injection characteristics and lead to fluctuation in the cycle fuel injection quantity. This fluctuation in the cycle fuel injection quantity is very critical for the coherence and stability of the common-rail system and the diesel that it injects. A new numerical model of a diesel engine’s common-rail system was developed in AMESim to investigate the cycle fuel injection quantity fluctuation. The predicted results of the rail pressure and the injection rate by the model are in excellent agreement with the experimental results obtained from a test bench. The influence law and the generation mechanism of the cycle fuel injection quantity fluctuation caused by variations in the different parameters are analysed in detail. Moreover, the quantitative percentages of fluctuation in the cycle fuel injection quantity are computed through analysis. The results show that the solenoid pre-tightening force, the orifice diameter of the outlet, the orifice diameter of the inlet and the needle lift are the four critical influential parameters of the common-rail system. Finally, a correlation analysis method was carried out on the cycle fuel injection quantity. The analysis results show that not only the first-order factors of the influential parameters but also the second-order factors which consider the interaction between the influential parameters have significant correlation with the cycle fuel injection quantity.
international conference on electronics communications and control | 2011
Yao Chong; Song Enzhe; Fan Liyun; Tian Yu; Ma Xiuzhen
Taking the Woodwards UG-25plus electro-hydraulic governor for research object, this paper established mathematical model of the electro-hydraulic speed governing system of diesel engine. By means of simulink simulation, analyzed the main factors which affect dynamic characteristics of hydraulic actuator, emphatically Analyzed influence of damping ratio, natural frequency and flow gain of servo valve on dynamic characteristics of Hydraulic system, and analyzed the dynamic characteristics of the speed governing system of diesel engine and obtained coincide with experimental results. The research provides theoretic basis for improvement design of electro-hydraulic governor during localization.
SAE 2010 World Congress & Exhibition | 2010
Fan Liyun; Zhu Yuanxian; Ma Xiuzhen; Tian Bingqi; Song Enzhe; Li Wenhui
Archive | 2015
Fan Liyun; Wang Hao; Yan Xin; Tian Bingqi; Ma Xiuzhen; Song Enzhe; Li Xuemin; Li Wenhui; Shi Yong
Archive | 2014
Ma Xiuzhen; Tian Bingqi; Wang Hao; Fan Liyun; Song Enzhe; Yao Chong; Li Xuemin; Li Wenhui; Fei Hongzi
Archive | 2013
Fan Liyun; Bai Yun; Wang Hao; Chen Chao; Yan Xin; Ma Xiuzhen; Song Enzhe; Fei Hongzi; Dong Quan
Journal of Mechanical Science and Technology | 2014
Tian Bingqi; Fan Liyun; Qaisar Hayat; Ma Xiuzhen; Song Enzhe; Hao Wang
Archive | 2014
Yang Liping; Song Enzhe; Shi Xingchao; Ma Xiuzhen; Yao Chong; Yang Xiaotao; Ding Shunliang
Archive | 2014
Bai Yun; Fan Liyun; Qiu Huibin; Lian Li; Zhang Jianyu; Ma Xiuzhen; Fei Hongzi; Liu Jingjing
Archive | 2013
Fan Liyun; Bai Yun; Wang Hao; Ma Xiuzhen; Liu Peng