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哈尔滨工业大学机电工程学院研究生考研导师简介-李松晶

本站小编 Free考研网/2019-05-25

基本信息科学研究教育教学CVPublications学生培养论文专著
师者,所以传道授业解惑者也;导师者,所以引导解惑者也;在于授之以渔。

本课题组要求博士生尽可能4年之内完成学业,4年后不发放科研津贴,除非参加与自己课题不直接相关的横向课题。有论文奖励,按学校论文奖励金额发放。

本课题组鼓励博士生开展国外联合培养。


基本信息
1970年9月出生,哈尔滨工业大学机电工程学院流体控制及自动化系,教授,博士生导师,系主任,1988年考入哈尔滨工业大学流体传动及控制专业攻读学士学位,1998年于哈尔滨工业大学流体传动及控制专业获得工学博士学位,后留校任教。现任中国机械工程学会高级会员、中国机械工程学会流体传动与控制分会常务委员、中国力学学会流体控制工程专业委员会委员、中国机械工程学会流体传动与控制分会国际交流工作委员会主席、黑龙江省机械工程学会液压与气动分会副秘书长、AAAS美国科学促进会会员、ASME美国机械工程师协会会员。多年从事流体传动及控制领域教学及科研工作,获得全国多媒体教学软件大奖赛三等奖1项,黑龙江省多媒体教育软件评比一等奖1项、三等奖1项,在微流控芯片、微纳流控装置、计算流体力学等方面取得了先进的研究成果,发表学术论文152余篇,其中SCI收录36篇,EI收录论文78篇,出版教材及编著4部,申请发明专利18项,已获得授权发明专利13项,实用新型专利2项,获得黑龙江省自然科学奖三等奖1项、科技进步三等奖1项。

工作经历
时间工作经历
2008.04至今哈尔滨工业大学 机械电子工程学科 博士生导师
2007.10至今哈尔滨工业大学 机电工程学院流体控制及自动化系 教授
2003.8-2004.9英国巴斯大学 动力传递及运动控制研究所 访问学者
2001.07-2007.10哈尔滨工业大学 流体控制及自动化教研室 副教授


教育经历
1992.07,哈尔滨工业大学 动力工程系 获工学学士学位 1998.07,哈尔滨工业大学 动力工程系 获工学博士学位


学术兼职
AAAS美国科学促进会会员

ASME美国机械工程师协会会员

GFPS 国际流体动力学会副主席(2016-2018)
ASME Koski Medal Committee委员(2018-2020)
中国机械工程学会高级会员

中国机械工程学会流体传动与控制分会常务委员

中国机械工程学会流体传动与控制分会国际交流工作委员会主席

黑龙江省机械工程学会液压与气动分会副秘书长

《液压与气动》、《机电工程》期刊编委,国内外多家学术期刊的审稿人

荣誉获奖
2008年 获校三八红旗手称号

2009年 被评为校优秀专兼职学生工作者标兵

2012年 被评为‘创先争优’优秀共产党员

2014年 被评为校优秀专兼职学生工作者

2015年 中国机械工程学会流体传动与控制分会先进个人

2019年 中国机械工程学会流体传动与控制分会先进个人


研究领域
微流控系统(Microfluidics)

微流控芯片、微泵、气动微阀、微流控驱动装置研究

研究领域
液压元件和系统中的计算流体力学(CFD for Hydraulic components and systems)

伺服阀前置级射流流场速度及压力分布的有限元分析,射流流场射流引起的高频自激压力脉动的有限元分析及其与射流流场结构参数之间特性关系的分析,伺服阀前置级射流流场与衔铁组件之间流固相互耦合的有限元分析。

研究领域
液压元件与系统基本理论(Fundmentals of hydraulic components and systems) 伺服阀自激噪声产生机理研究,包括伺服阀单一频率高频自激噪声及伺服阀前置级射流流场压力脉动来源及产生机理的研究,伺服阀前置级射流流场剪切层振荡的产生机理及产生条件的研究,力矩马达衔铁组件振动与伺服阀前置级射流流场压力脉动相互耦合及作用机理的研究,自激噪声与伺服阀稳定性之间关系的研究。

伴随气泡和气穴的液压管路瞬态研究

研究领域
功能流体应用(Application of functional fluids)磁流体改善伺服阀性能的机理研究

磁流变流体阻尼器和减震器研究

讲授课程
液压传动Hydraulic Transmission

课程类型:专业基础课,授课对象:本科生,总学时:40,讲课学时:32,实验学时:8,学分:2.0

《液压传动》是机械设计制造及其自动化专业的技术基础课程。通常来讲,一般的机械设备是由动力装置、传动装置、工作执行装置和控制操纵装置组成。传动装置有机械传动、电力传动、气压传动和它们的组合等形式。液压传动是与机械传动、电力和气压传动等相并列的一种传动形式,是机械设备设计、使用和维护所必须掌握的技术和知识。《液压传动》课程是“机械设计制造及其自动化“专业的主干课,又是后继课程(《液压控制系统》和其它专业课)的先修课。


微流控技术概论

课程类型:选修,授课对象:本科生,总学时:32,讲课学时:28,实验学时:4,学分:2.0
《微流控技术概论》是一门为机械设计制造及自动化专业的本科生开设的一门专业选修课。课程的目的是介绍微流控技术有关的交叉学科的知识以及液压学科本身正在发展的前沿性知识,目的是提高学生的创新能力,开阔学生视野。课程内容包括:微流控技术概述,微流控芯片和微流控生物芯片;微流控信息技术;微流控光学技术;微流控机械技术等。


讲授课程
先进液压传动技术概论INTRODUCTION OF ADVANCED HYDRAULIC TRANSMISSION TECHNIQUES课程类型:选修课,授课对象:本科生,总学时:18,讲课学时:18,学分:1.0

本课程目的在于使学生了解液压传动技术的发展前沿,了解相关的计算机、新材料以及自动化技术在液压系统中的应用,了解液压元件和系统设计的新思想和新理念。本门课程为一门选修课程,目的在于拓宽学生的知识面,促进学生对先进液压传动技术的了解,在整个教学计划中起辅助作用。

该课程可访问超星学术视频http://video.chaoxing.com/serie_**.shtml

讲授课程
功能流体 FUNCTIONAL FLUIDS

课程类型:创新研修课,授课对象:本科生,总学时:20,讲课学时:4,实践:16,学分:1.0

功能流体除了具有流体的特性外,还能够在一定条件下呈现出流变特性增强、屈服应力增大等特殊的性质,因而被广泛应用于制作微型驱动装置、阻尼器、减震器、无动作部件的液压阀、微小流控系统以及密封件等,具有结构紧凑、易于实现自动化控制、磨损小、寿命长等优点。本课程介绍磁流体、磁流变流体、电流变流体和电共轭流体等几种功能流体的性质、机理及应用。通过功能流体流变特性演示实验、磁流体密封设计计算、磁流变流体溢流阀特性试验、磁流变流体换向回路试验台搭建以及磁流变流体应用设计等教学环节,使学生能够具备设计和研制功能流体应用装置的能力,提高学生的创新意识。

讲授课程
走进奇妙的流体力学世界 A Fabulious Fluid Mechanics World

课程类型:新生研讨课,授课对象:本科生,总学时:16,讲课学时:16,学分:1.0

流体力学与人类的日常生活、生产和生存息息相关,大到天体运动,小到毛细血管中血液的流动都离不开流体力学规律的作用。本课程采取首先通过教师集中讲授、然后进行实验室参观以及实例讲解等环节使学生了解流体力学领域的浴帘效应、塔科马桥事件以及水锤效应等几个有趣问题的来源、特性及其理论意义,通过讨论梳理生活中的流体力学、流体力学的发展历史以及流体力学领域目前国际学术界与工程界关注的热点方向与问题,针对圆柱绕流、喷嘴射流、流场中气穴产生及破灭等热点问题,开展流体力学研究方法、CFD仿真及实验手段的了解及学习。本课程将根据选课学员专业兴趣分组选题,采用资料调研、小组讨论并辅以教师点评等方式制定问题解决方案,形成研究报告;最后,各小组在课堂以答辩的形式分别呈现研究报告,通过同学间质疑、讨论以及教师点评,对各小组工作进行评价。

该课程可访问超星学术视频http://video.chaoxing.com/serie_**.shtml

讲授课程
专业强化训练系列实验课课程类型:选修课,授课对象:本科生,总学时:18,讲课学时:4,实践:14,学分:1.0该系列实验课程包括《顺序动作液压回路》、《限压式变量叶片泵工作特性》、《液压泵压力脉动及噪声测试》三个实验,每个实验18学时。

基本信息
Professor Songjing Li is the professor and Head of Department of Fluid Control and Automation at Harbin Institute of Technology(HIT), China. She is also a senior member of CMES, member of ASME and deputy member of Fluid Power Transmission and Control Institute. She started to teach and do research work at HIT from 1996. The courses she gave include and . Her research interests include CFD for hydraulic components and systems, design of new type hydraulic components and systems, microfluidic system and devices, Lab-on-a-chip. She has won 4 awards for her work on the multi-media education software and 1 natural science award of Heilongjiang province for her research. She published 102 journal and conference papers and 4 books. She was responsible for or takes part in more than 20 projects and owns 7 patents now.



Education experience:

1992.09-1998.07, PhD student, Department of Fluid Power Transmission and Control, Harbin Institute of Technology, China

1988.09-1992.07, Undergraduate student, Department of Fluid Power Transmission and Control, Harbin Institute of Technology, China

Working experience:

2008.04-present, PhD supervisor, Department of Fluid Control and Automation, Mechatronics School, Harbin Institute of Technology, China

2007.10-present, Professor, Department of Fluid Control and Automation, Mechatronics School, Harbin Institute of Technology, China

2003.08-2004.09, Visiting Scholar, Center for Power Transmission and Motion Control, University of Bath, UK

2001.07-2007.10, Associate Professor, Department of Fluid Control and Automation, Mechatronics School, Harbin Institute of Technology, China

1998.07-2001.07, Lecturer, Department of Fluid Control and Automation, Mechatronics School, Harbin Institute of Technology, China

1996.03-1998.07, teaching assistant, Department of Fluid Control and Automation, Mechatronics School, Harbin Institute of Technology, China

Books
Songjing LiXuling LiuWeiliang JiaChapter: Pneumatic pump Encyclopedia of Microfluidics and NanofluidicsSpringer 2013.06Songjing LiDong Xiang Wei Zhang, Easy way to read and understand hydraulic and pneumatic circuits, Chemical Engineering Publishing House,2013.03Songjing Li Qingyan Wang, Classical design examples of hydraulic systems, Chemical Engineering Publishing House,2012.08Songjing Li Dacheng Cong Hongzhou Jiang, Analyzing technics for principle circuit drawing of hydraulic systems, Chemical Engineering Publishing House, 2009.01 Songjing Li Jian Ruan Yongjun Gong, Introducton of Advanced hydraulic transmission technology, Publishing house of Harbin Institute of Technology, 2008.01


Papers
Hasiaoqier Han, Songjing Li. Numerical Investigation on Suppressing High Frequency Slef-Ecited Noises of Armature Assembly in a Torque Motor Using Ferrofluid, Shock and Vibration, 2017, 05:1-10 (IF1.2)

Hai Fu, Xuling Liu, Songjing Li. Mixing indexes considering the combination of mean and dispersion information from intensity images for the performance estimation of micromixing, RSC Advances, 2017,7(18):10906~10914(IF 3.9)

Xuling Liu, Songjing Li. Numerical Simulation on the Response Characteristics of a Pneumatic Microactuator for Microfluidic Chips, JALA, 2016, 21(3): 412-422 (IF 2.87)
Min Zhang, Songjing Li. Controllable liquid colour-changing lenses with microfluidic channels for vision protection, camouflage and optical filtering based on soft lithography fabrication, Springerplus, 2016,(5): 450 (IF 1.045)

Shengzhuo Zhang, Nay Zar Aung*, Songjing Li*. Reduction of undesired lateral forces acting on the flapper of a flapper–nozzle pilot valve by using an innovative flapper shape, Energy Conversion and Management, 106 (2015) 835–848 (IF4.28/2014)

Jixiao Liu, Hai Fu, Tianhang Yang, and Songjing Li*. Automatic sequential fluid handling with multilayer microfluidic sample isolated
pumping, Biomicrofluidics 9, 054118 (2015); doi: 10.1063/1.** (IF3.26/2014)

Jixiao Liu, Songjing Li*, Debkishore Mitra. Multiphysical phenomenon of air bubble growth in polydimethylsiloxane channel corners under microfluidic negative pressure-driven flow. International Journal of Heat and Mass Transfer, 91 (2015) 611–618 (IF2.26/2014)

Wen Zeng, Songjing Li*, Zuwen Wang. Closed-loop feedback control of droplet formation in a T-junctionmicrodroplet generator. Sensors and Actuators A: Physical, 233 (2015) 542–547 (IF2.01/2014

Wen Zeng, Ian Jacobi, Songjing Li* and Howard A Stone*. Variation in polydispersity in pump- and pressure-driven micro-droplet generators. Journal of Micromechanics and Microengineering, 25 (2015) 115015 (4pp) (IF1.87/2014)

Xuling Liu, Songjing Li*. Numerical Simulation on the Response Characteristics of a Pneumatic Microactuator for Microfluidic Chips, Journal of Laboratory Automation, 06, 2015, DOI: 10.1177/**84769 (IF1.51/2014)

Songjing Li*, Min Zhang, Boxun Nie. A microfluidic system for liquid colourchanging glasses with shutter shade effect, Microsystem Technology, 3, 2015, DOI 10.1007/s00542-015-2506-7 (IF 0.952)

Jiang Dana?, Li Song-Jingb, Yang Pinga, and Zhao Tian-Yanga. Frequency-dependent friction in pipelines, Chinese Physics B, Vol. 24, No. 3 (2015): 034701 (IF 1.392)

Qingjun Yang a, Nay Zar Aung a,b*, Songjing Lia*. Confirmation on the effectiveness of rectangle-shaped flapper in reducing cavitation in flapper–nozzle pilot valve, Energy Conversion and Management, 98 (2015): 184–198 (IF 3.59)

Wen Zeng,ab Ian Jacobi,ac David J. Beck,a Songjing Li*b and Howard A. Stone*a . Characterization of syringe-pump-driven induced pressure fluctuations in elastic microchannels, Lab-on-a-Chip, 2015, DOI: 10.1039/C4LC01347F(IF5.748)

Jinghui Peng, Songjing Li and Yongbo Fan. Modeling and Parameter Identification of the Vibration Characteristics of Armature Assembly in a Torque Motor of Hydraulic Servo Valves under Electromagnetic Excitations. Advances in Mechanical Engineering, 2014 (2014), Article ID 247384, 10 pages, (IF1.062/2013) http://dx.doi.org/10.1155/2014/247384

Jinghui Peng, Songjing Li and Hasiaoqier Han. Damping properties for vibration suppression in electrohydraulic servo-valve torque motor using magnetic fluid, Applied Physics Letter, 104, 171905 (2014)(IF3.794/2013) http://dx.doi.org/10.1063/1.**

Xuling Liu, Songjing Li. An electromagnetic microvalve for pneumatic control of microfluidic systems, Journal of Laboratory Automation, 17, 2014, **3176 (IF1.457/2013) doi: 10.1177/**31760

Nay Zar Aung, Qingjun Yang, Songjing Li. CFD analysis of flow forces and energy loss characteristics in a flapper-nozzle pilot valve with different null clearances, Energy Conversion and Management, 83, 2014: pp. 284-295 (IF2.775/2013)

Nay Zar Aung, Songjing LI. A numerical study of cavitation phenomenon in a flapper-nozzle pilot stage of an electrohydraulic servo-valve with an innovative flapper shape. Energy Conversion and Management, 01, 2014:(IF2.775 /2013)

蒋丹,李松晶,杨平. 无阀微泵腔内气泡对周期驱动压力的影响,物理学报(Acta Physica Sinica),62(22),2013: 224703.1-7(IF1.016 /2013)

Songjing Li, Nay Zar Aung, Shengzhuo Zhang, Junzhang Cao, Xinzhi Xue. Experimental and Numerical Investigation of Cavitation Phenomenon in Flapper-Nozzle Pilot Stage of an Electrohydraulic Servo-Valve. Computers and Fluids, 10, 2013 DOI: 10.1016/j.compfluid.2013.10.016 (IF1.467/2013)

Nay Zar Aung, Songjing LI. Numerical investigation on effect of riser diameter and inclination on system parameters in a two-phase closed loop thermosyphon solar water heater. Energy Conversion and Management, 75, 2013:pp. 25-35 http://dx.doi.org/10.1016/j.enconman.2013.06.001(IF2.775 /2013)

Songjing Li, Jixiao Liu, Dan Jiang. Dynamic Characterization of a Valveless Micropump Considering Entrapped Gas Bubbles. Journal of Heat Transfer,135(9), 2013: 091403(7 pages)doi:10.1115/1.** (IF1.718/2013)

Jiang Dan, Li Songjing, Kevin A Edge. Modeling and simulation of low pressure oil-hydraulic pipeline transients, Computers and Fluids, 07, 2012, http://dx.doi.org/10.1016/j.compfluid.2012.07.005(IF1.467/2013)

Jiang Dan, Li Songjing. The dynamic characteristics of a valve-less micropump, Chinese Physics B, 21(7), 2012(IF1.148/2013)

Zeng, W., Tong, Z., Li, S., Li, H., Zhang, L. Thermodynamic characteristic study of a high-temperature flow-rate control valve for fuel supply of scramjet engines. Chinese Journal of Aeronautics, 25(4), 2012, pp. 559 - 565 (IF0.438/2013)

Li Songjing, Peng,Jinghui , Zhang Shengzhuo, Mchenya, Jacob M. Depression of Self-Excited Pressure Oscillations and Noise in the Pilot Stage of a Hydraulic Jet-Pipe Servo-Valve Using Magnetic Fluids, Advanced Materials Research, v 378-379, pp. 632-635, 2012, (EI检索号:**497)

蒋丹,李松晶, 杨平. 收缩管/扩张管型无阀压电微泵的动态特性研究,工程力学,2011, 24(3):218-223 (EI检索号:**628)

Li Hao, LI Songjing, Jinghui Peng. Study of self-excited noise and pressure oscillations in a hydraulic jet-pipe servo-valve with magnetic fluids, 2010, ISSCAA, p 1237-1241(EI检索号:**819)

Jiang Dan, Li Songjing. A hydraulic analogue model and analysis of a micropump considering the diaphragm,key engineering materials, 2009,(392-394): 116-120 (EI检索号:**223)

博士研究生
贾伟亮2012.09-硕士毕业于昆明理工大学,现哈尔滨工业大学博士在读,主要研究方向:微流控多焦点眼镜
陈 猛 2013.09-硕士毕业于东北大学,主要研究方向:伺服阀自激振动及噪声
符海2014.09本科毕业于吉林大学,硕士毕业于哈尔滨工业大学,现美国杜克大学(Duke University)联合培养,主要研究方向:微流控装置

杨天航2015.09- 本科毕业于哈尔滨工业大学英才学院硕博连读研究生,现美国华盛顿大学(Washington University)联合培养,主要研究方向:细胞冷冻机理

吕欣倍 2016.03- 本科硕士毕业于哈尔滨工程大学,主要研究方向:伺服阀分布参数建模

Bijan Krishna Saha2016.09- 本科硕士毕业于孟加拉共和国(People's Republic Of Bangladesh)

朱鋆峰 2017.03- 本科毕业于哈尔滨工业大学,主要研究方向:生物样品提取微流控芯片

孙林2018.09- 本科硕士毕业于哈尔滨工程大学,主要研究方向:微流控芯片及气压驱动

李通2018.09- 河南航天液压与气动研究所联合培养,主要研究方向:伺服阀

硕士研究生
顾佳鎏2017.09- 毕业于哈尔滨工业大学英才学院

翟辉2017.09- 毕业于哈尔滨工业大学
姜艳2018.09- 毕业于哈尔滨工业大学

吴优 2018.09- 毕业于燕山大学


已毕业博士研究生
蒋丹 2005.09-2009.04 现电子科技大学(成都)机电工程学院 副教授

Jacob M Mchenya2009.09-2012.07现坦桑尼亚Dar es Salaam Institute of Technology任教

刘吉晓2010-2015,(2012-2014加州大学伯克利分校联合培养) 现河北工业大学任教

Nay Zar Aung 2012.09-2015.07现缅甸联邦共和国(Union Of Myanmar)任教

刘旭玲2011.03-2016.01美国宾州州立大学(PennsylvaniaState University)交换

张 玮 2011.09- 兰州理工大学任教

张圣卓2011.09-2015.12 美国约翰-霍普金斯大学(The Johns Hopkins University)联合培养,现航天一院15所

彭敬辉2011.09-2015.03 日本法政大学博士后,现美国普林斯顿大学(Princeton University)博士后

曾 文 2011.09-2016.12 美国普林斯顿大学(Princeton University)联合培养,哈尔滨工业大学任教

张敏2013.03-2017.03


已毕业硕士研究生
韩笑 2013。09-2015.07 本科毕业于哈尔滨工业大学,现美国AB公司王贝贝2013.09-2015.07本科毕业于哈尔滨工业大学,现商飞集团曹俊章 2011.09-2013.07本科毕业于哈尔滨工业大学,现商飞集团韩哈斯敖其尔2011.09-2013.07本科毕业于哈尔滨工业大学,现长春光机所张振2011.09-2013.07本科毕业于哈尔滨工业大学,现一汽大众集团张亮2010.09-2012.07 现一汽大众集团李洪洲2010.09-2012.07 现航天三院31所


论著成果
Songjing LiXuling LiuWeiliang JiaChapter: Pneumatic pump Encyclopedia of Microfluidics and NanofluidicsSpringer 2013.06李松晶、向东、张玮轻松看懂液压气动系统原理图化学工业出版社2013.03李松晶、王清岩等 液压系统经典设计实例 化学工业出版社 2012.08李松晶、阮健、弓永军 先进液压传动技术概论 哈尔滨工业大学出版社 2008.01李松晶、丛大成、姜洪洲液压系统原理图分析技巧化学工业出版社 2009.01


论文期刊
Audioslides-Paper in Computers and Fluids-Cavitation in the pilot stage of servo-valves

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Hasiaoqier Han, Songjing Li. Numerical Investigation on Suppressing High Frequency Slef-Ecited Noises of Armature Assembly in a Torque Motor Using Ferrofluid, Shock and Vibration, 2017, 05:1-10 (IF1.2)
Hai Fu, Xuling Liu, Songjing Li. Mixing indexes considering the combination of mean and dispersion information from intensity images for the performance estimation of micromixing, RSC Advances, 2017,7(18):10906~10914(IF 3.9)

Xuling Liu, Songjing Li. Numerical Simulation on the Response Characteristics of a Pneumatic Microactuator for Microfluidic Chips, JALA, 2016, 21(3): 412-422 (IF 2.87)
Min Zhang, Songjing Li. Controllable liquid colour-changing lenses with microfluidic channels for vision protection, camouflage and optical filtering based on soft lithography fabrication, Springerplus, 2016,(5): 450 (IF 1.045)
Shengzhuo Zhang, Nay Zar Aung*, Songjing Li*. Reduction of undesired lateral forces acting on the flapper of a flapper–nozzle pilot valve by using an innovative flapper shape, Energy Conversion and Management, 106 (2015) 835–848 (IF4.28/2014)

Jixiao Liu, Hai Fu, Tianhang Yang, and Songjing Li*. Automatic sequential fluid handling with multilayer microfluidic sample isolated
pumping, Biomicrofluidics 9, 054118 (2015); doi: 10.1063/1.** (IF3.26/2014)

Jixiao Liu, Songjing Li*, Debkishore Mitra. Multiphysical phenomenon of air bubble growth in polydimethylsiloxane channel corners under microfluidic negative pressure-driven flow. International Journal of Heat and Mass Transfer, 91 (2015) 611–618 (IF2.26/2014)

Wen Zeng, Songjing Li*, Zuwen Wang. Closed-loop feedback control of droplet formation in a T-junctionmicrodroplet generator. Sensors and Actuators A: Physical, 233 (2015) 542–547 (IF2.01/2014)

Wen Zeng, Ian Jacobi, Songjing Li* and Howard A Stone*. Variation in polydispersity in pump- and pressure-driven micro-droplet generators. Journal of Micromechanics and Microengineering, 25 (2015) 115015 (4pp) (IF1.87/2014)

Xuling Liu, Songjing Li*. Numerical Simulation on the Response Characteristics of a Pneumatic Microactuator for Microfluidic Chips, Journal of Laboratory Automation, 06, 2015, DOI: 10.1177/**84769 (IF1.51/2014)

Songjing Li*, Min Zhang, Boxun Nie. A microfluidic system for liquid colourchanging glasses with shutter shade effect, Microsystem Technology, 3, 2015, DOI 10.1007/s00542-015-2506-7 (IF 0.952)

Jiang Dana?, Li Song-Jingb, Yang Pinga, and Zhao Tian-Yanga. Frequency-dependent friction in pipelines, Chinese Physics B, Vol. 24, No. 3 (2015): 034701 (IF 1.392)

Qingjun Yang a, Nay Zar Aung a,b*, Songjing Lia*. Confirmation on the effectiveness of rectangle-shaped flapper in reducing cavitation in flapper–nozzle pilot valve, Energy Conversion and Management, 98 (2015): 184–198 (IF 3.59)

Wen Zeng,ab Ian Jacobi,ac David J. Beck,a Songjing Li*b and Howard A. Stone*a . Characterization of syringe-pump-driven induced pressure fluctuations in elastic microchannels, Lab-on-a-Chip, 2015, DOI: 10.1039/C4LC01347F(IF5.748)

Jinghui Peng, Songjing Li* and Yongbo Fan. Modeling and Parameter Identification of the Vibration Characteristics of Armature Assembly in a Torque Motor of Hydraulic Servo Valves under Electromagnetic Excitations. Advances in Mechanical Engineering, 2014 (2014), Article ID 247384, 10 pages, (IF1.062/2013) http://dx.doi.org/10.1155/2014/247384

Jinghui Peng, Songjing Li and Hasiaoqier Han. Damping properties for vibration suppression in electrohydraulic servo-valve torque motor using magnetic fluid, Applied Physics Letter, 104, 171905 (2014)(IF3.794/2013) http://dx.doi.org/10.1063/1.**

Xuling Liu, Songjing Li. An electromagnetic microvalve for pneumatic control of microfluidic systems, Journal of Laboratory Automation, 17, 2014, **3176 (IF1.457/2013) doi: 10.1177/**31760

Nay Zar Aung, Qingjun Yang, Songjing Li. CFD analysis of flow forces and energy loss characteristics in a flapper-nozzle pilot valve with different null clearances, Energy Conversion and Management, 83, 2014: pp. 284-295 (IF2.775/2013)

Nay Zar Aung, Songjing LI. A numerical study of cavitation phenomenon in a flapper-nozzle pilot stage of an electrohydraulic servo-valve with an innovative flapper shape. Energy Conversion and Management, 01, 2014:(IF2.775 /2013)

蒋丹,李松晶,杨平. 无阀微泵腔内气泡对周期驱动压力的影响,物理学报(Acta Physica Sinica),62(22),2013: 224703.1-7(IF1.016 /2013)

Songjing Li, Nay Zar Aung, Shengzhuo Zhang, Junzhang Cao, Xinzhi Xue. Experimental and Numerical Investigation of Cavitation Phenomenon in Flapper-Nozzle Pilot Stage of an Electrohydraulic Servo-Valve. Computers and Fluids, 10, 2013 DOI: 10.1016/j.compfluid.2013.10.016 (IF1.467/2013)

Nay Zar Aung, Songjing LI. Numerical investigation on effect of riser diameter and inclination on system parameters in a two-phase closed loop thermosyphon solar water heater. Energy Conversion and Management, 75, 2013:pp. 25-35 http://dx.doi.org/10.1016/j.enconman.2013.06.001(IF2.775 /2013)

Songjing Li, Jixiao Liu, Dan Jiang. Dynamic Characterization of a Valveless Micropump Considering Entrapped Gas Bubbles. Journal of Heat Transfer,135(9), 2013: 091403(7 pages)doi:10.1115/1.** (IF1.718/2013)

Jiang Dan, Li Songjing, Kevin A Edge. Modeling and simulation of low pressure oil-hydraulic pipeline transients, Computers and Fluids, 07, 2012, http://dx.doi.org/10.1016/j.compfluid.2012.07.005(IF1.467/2013)

Jiang Dan, Li Songjing. The dynamic characteristics of a valve-less micropump, Chinese Physics B, 21(7), 2012(IF1.148/2013)

Zeng, W., Tong, Z., Li, S., Li, H., Zhang, L. Thermodynamic characteristic study of a high-temperature flow-rate control valve for fuel supply of scramjet engines. Chinese Journal of Aeronautics, 25(4), 2012, pp. 559 - 565 (IF0.438/2013)

Li Songjing, Peng,Jinghui , Zhang Shengzhuo, Mchenya, Jacob M. Depression of Self-Excited Pressure Oscillations and Noise in the Pilot Stage of a Hydraulic Jet-Pipe Servo-Valve Using Magnetic Fluids, Advanced Materials Research, v 378-379, pp. 632-635, 2012, (EI检索号:**497)

蒋丹,李松晶, 杨平. 收缩管/扩张管型无阀压电微泵的动态特性研究,工程力学,2011, 24(3):218-223 (EI检索号:**628)

Li Hao, LI Songjing, Jinghui Peng. Study of self-excited noise and pressure oscillations in a hydraulic jet-pipe servo-valve with magnetic fluids, 2010, ISSCAA, p 1237-1241(EI检索号:**819)

Jiang Dan, Li Songjing. A hydraulic analogue model and analysis of a micropump considering the diaphragm,key engineering materials, 2009,(392-394): 116-120 (EI检索号:**223)

Songjing Li, Wen Bao. Influence of magnetic fluids on the dynamic characteristics of a hydraulic servo-valve torque motor. Mechanical Systems and Signal Processing, 2008, 22(4):1008-1016. (SCI,2006影响因子1.180)

Songjing Li, Chifu Yang, Dan Jiang. Modeling of Hydraulic Pipeline Transients Accompanied with Cavitation and Gas Bubbles Using Parallel Genetic Algorithms. ASME Journal of Applied Mechanics, 2008, 75(7). (SCI,2006影响因子0.943)

蒋丹、李松晶、包钢. 采用遗传算法的压力脉动过程中气泡和气穴模型辨识. 物理学报,2008,08(SCI,2006影响因子1.051)

Songjing LI. Thermodynamic analysis of friction pairs inside a high temperature flow rate control valve for scramjet engines. Material science forum, 2008, 04: 575-578 (EI)

Songjing Li, Yanwei Song. Dynamic response of a hydraulic servo-valve torque motor with magnetic fluids. Mechatronics, 2007, 17(8):442-447(SCI,2006影响因子0.745)


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