吉林大学学报(工学版) ›› 2018, Vol. 48 ›› Issue (3): 727-734.doi: 10.13229/j.cnki.jdxbgxb20170174
钟兵1,2, 洪伟1,2, 金兆辉1,2, 苏岩1,2, 解方喜1,2, 张富伟3
ZHONG Bing1,2, HONG Wei1,2, JIN Zhao-hui1,2, SU Yan1,2, XIE Fang-xi1,2, ZHANG Fu-wei3
摘要: 通过成本低廉且结构简单的直动式溢流阀实现了液压气门机构的进气门早关和气门升程的连续可变,探究了设定压力和倒拖转速对气门运动特性的影响并对其动作偏差进行了分析。研究发现:转速保持不变时,气门最大升程只与设定压力有关,呈现随设定压力增大而逐渐增大的趋势,不同设定压力下气门开启角度差异较小且随着转速的增大而逐渐滞后;随着转速的升高,相同设定压力下气门最大升程逐渐变大,并且在设定压力为4.5 MPa时增大趋势减缓,机构惯性对升程增大的贡献量微乎其微。相关参数的X2检验结果表明:各参数均符合正态分布,相关参数值为估计均值且其偏差值为各自的估计均方差,气门动作具有较好的一致性。随着液压油温度的升高,气门最大升程逐渐降低,关闭时刻逐渐提前。
中图分类号:
[1] Gottschalk W, Lezius U, Mathusall L. Investigations on the potential of a variable miller cycle for SI knock control[C]∥SAE Paper,2013-01-1122. [2] Fontana G, Galloni E.Variable valve timing for fuel economy improvement in a small spark-ignition engine[J]. Applied Energy,2009,86(1):96-105. [3] Zhong B, Hong W, Xie F X.Effect of initial start conditions on combustion and rotation characteristics of first firing cycle during direct-start process for a GDI engine[J]. Applied Thermal Engineering,2017,127:116-126. [4] Heeje S, Kyeong L, Seungmok C. Effects of engine operating parameters on morphology of particulates from a gasoline direct injection (GDI) engine[C]∥SAE Paper,2013-01-2574. [5] Liang Bin, Ge Yun-shan, Tan Jian-wei,et al.Comparison of PM emissions from a gasoline direct injected (GDI) vehicle and a port fuel injected (PFI) vehicle measured by electrical low pressure impactor (ELPI) with two fuels: gasoline and M15 methanol gasoline[J]. Journal of Aerosol Science,2013,57(5):22-31. [6] Amman H, Alger T, Mehta D. The effect of EGR on low-speed pre-ignition in boosted SI engines[C]∥SAE Paper,2011-01-0339. [7] Zhen Xu-dong,Wang Yang,Xu Shuai-qing, et al.The engine knock analysis—an overview[J]. Applied Energy,2012,92:628-36. [8] Hudson C,Gao X,Stone R.Knock measurement for fuel evaluation in spark ignition engines[J]. Fuel,2001,80(3):395-407. [9] Galloni E, Fontana G, Staccone S.Numerical and experimental characterization of knock occurrence in a turbo-charged spark-ignition engine[J]. Energy Conversion and Management,2014,85:417-424. [10] Galloni E.Dynamic knock detection and quantification in a spark ignition engine by means of a pressure based method[J]. Energy Conversion and Management,2012,64:256-262. [11] Shojaeefard M H, Tahani M, Etghani M M, et al.Cooled EGR for a turbo charged SI engine to reduce knocking and fuel consumption[J]. Int J Automot Eng,2013,3(3):481-488. [12] Grandin B, Ångström H. Replacing fuel enrichment in a turbo charged SI engine: lean burn or cooled EGR[C]∥SAE Paper,1999-01-3505. [13] Mikalsen R, Wang Y D, Roskilly A P.A comparison of Miller and Otto cycle natural gas engines for small scale CHP applications[J]. Applied Energy,2009,86(6):922-927. [14] Zhao Jin-xing,Xu Min.Fuel economy optimization of an Atkinson cycle engine using genetic algorithm[J]. Applied Energy,2013,105:335-348. [15] Zhao Jin-xing, Xu Min, Li Mian, et al.Design and optimization of an Atkinson cycle engine with the artificial neural network method[J]. Applied Energy,2012,92(C):492-502. [16] 谢宗法. 基于配气凸轮驱动的全可变液压气门机构的研究[D].济南:山东大学机械工程学院,2011. Xie Zong-fa.Study on fully variable hydraulic valve system drived by valve-train cam[D]. Ji'nan:College of Mechinical Engineering,Shandong University,2011. [17] 崔靖晨,隆武强,田江平,等. 双模式电液全可变气门驱动系统的可控性研究[J]. 内燃机工程,2014,35(2):36-41. Cui Jing-chen,Long Wu-qiang,Tian Jiang-ping,et al.Investigation on controllability of dual-mode fully variable valve eletro-hydraulic actuation system[J]. Chinese Internal Combustion Engineering,2014,35(2):36-41. [18] 王积伟. 液压与气压传动[M]. 北京:机械工业出版社,2013. |
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