教育背景
2016.12、2017.3两次到英国利兹大学短期访问
2014.5-2015.5澳大利亚昆士兰大学访学
2013.9-2013.12美国俄克拉荷马州立大学访学
2006.3-2011.7西南交通大学,博士
2005.6-今,西南交通大学超导研究开发中心、电气工程学院
2002.9-2005.6华中科技大学,硕士
工作经历
项目课题经历
近两年主持的项目经费超过400万元
正在开展的项目:
(1)《高速列车系统电磁兼容检测平台应用》,140.2万,2018.2-2020.6
(2)《受电靴磁铁优化设计及地面供电模块钢带动态仿真分析》,44.8万,2018.7-2019.5
(3)《无接触网供电城轨车辆电磁兼容仿真技术》,40.5万,2018.9-2019.12
(4)《无接触网供电城轨车辆电磁兼容测试研究》,49.5万,2018.9-2019.12
(5)《采用车地一体化在线监测技术的地面供电诊断系统研究》,56万,2019.3-2020.3
(6)《内燃机车电磁兼容研究》,70万,2019.6-2020.6
(7)磁浮技术与磁浮列车教育部重点实验室2018年开放课题
(8)国家自然科学基金高铁联合基金重点项目,U1834203(参加),负责部分内容.
已经完成项目:
(1)国家863项目:超导电磁XXX技术,20万,2007.7-2008.6,主持
(2)国家863项目:超导XXX应用研究,80万,2008.7-2009.6,主持
(3)国家863项目:超导XXX应用研究,30万,2009.7-2010.6,主持
(4)国家863项目(2014):超导XXX机理研究,80万,2014.7-2015.6,参与
(5)2013年度中央高校基本科研业务费科技创新项目,10万,2013-2014,主持
(6)高速铁路牵引供电关键设备服役性态演变机理及系统健康诊断,联合基金,270万,2013.7-2016.12.参与
(7)横向项目:攀枝花发展轨道交通装备制造业研究, 19.6万,2016.3-2017.6.参与
论文、成果、著作等
学术论文
* Liang Dong, Senliang Li , Huajun Xie, Qiumin Zhang, and Jing Liu. Influence of Capacitor Parameters on Launch Performance of Multipole Field Reconnection Electromagnetic Launchers [J].IEEE TRANSACTIONS ON PLASMA SCIENCE ,2018,46(7)2642-2646. WOS:000438121500022
*Liang Dong,Senliang Li.Multipole Field Reconnection Electromagnetic Launcher [J].IEEE TRANSACTIONS ON PLASMA SCIENCE ,2018,46(2)458-462. WOS:000424781500016
*Dong Liang,Xu qingying,et al.Simulation and Experimental Investigation of a High-Temperature Superconducting Inductive Pulsed Power Supply with Time Delay Effect of the Secondary Side[J].J.Physica C, 2017,541,16-21. WOS:000410647600003
*廖骁勇(本人硕士研究生),严仲明,聂新毅,王豫,董亮, 基于YBCO的变压器型双面超导薄膜限流器[J].低温物理学报,2017,1(39)50-54.
*江明阳(本人硕士研究生),王豫,董亮,严仲明,范光程,感应型直线电磁驱动器耦合特性及控制优化研究.微电机,2017,10(50)18-22.
*李海涛,王豫,董亮等.基于超导储能电感的meat-grinder脉冲电源[J].高电压技术, 2014, 40(4):1127-1133.
*DONG Liang, CHEN HanJun, GAN YingJie, WANG Yu, DONG Xiang, PENG ShuJie, Thermoelectric properties of tungsten ceramics prepared from nanopowder precursors, Chin. Sci. Bull, 58,2924-2926,2013
*Xiang Dong, Haiqing Wang, Zhongqiu Hua, Shujie Peng,Liang Dong, Yu Wang, Thermoelectric properties of WO3-based ceramics doped with Co2O3, J. Mater. Sci. Mater. Electron,23,1210-1214.,2013
*Xiang Dong*, Yingjie Gan, Liang Dong, Shujie Peng, Yu Wang, Improvement of thermoelectric properties of WO3 ceramics by NiO addition, J. Mater. Sci. Mater. Electron, 24,4316-4320,2013
*Xiang Dong, Yingjie Gan, Yu Wang, Shujie Peng,Liang Dong, Effect of La2O3 on high-temperature thermoelectric properties of WO3 J. Alloys Compd, 581,52–55.,2013
*Xiang Dong, Yingjie Gan, Liang Dong, Shujie Peng,Yu Wang,Enhanced thermoelectric properties of WO3 by adding SnO2,J. Mater. Sci. Mater. Electron, 24,4494-4498,2013
*Yingjie Gan, Xiang Dong, Shujie Peng, Liang Dong, Yu Wang, Microstructure and thermoelectric properties of tungsten trioxide ceramics doped with a low amount of terbium dioxide,J. Mater. Sci. Mater. Electron, 24,4001-4007,2013
*Haiqing Wang, Xiang Dong, Shujie Peng, Liang Dong, Yu Wang, Improvement of thermoelectric properties of WO3 ceramics by ZnO addition, J. Alloys Compd, 527,204-209,2012
*Haiqing Wang, Zhongqiu Hua, Shujie Peng, Xiang Dong, Liang Dong, Yu Wang, Effect of CeO2 on the thermoelectric properties of WO3-based ceramics, Ceramics International, 38 ,1133-1137,2012
*Haiqing Wang, Yingjie Gan, Xiang Dong, Shujie Peng,Liang Dong, Yu Wang,Thermoelectric properties of Ti-doped WO3 ceramics,J. Mater. Sci. Mater. Electron,23,2229-2234,2012
*Liang Dong, Yu Wang, Yong Zhao, The study on electrical behavior of Gd2O3-WO3 complex ceramics at high temperature, material letter, 61 (2007) :2105~2108 .
*Liang Dong, Han-jun Chen, Yu Wang,De-Zhu Li,Tong-Ye Li and Yong Zhao. Influence of sintering temperature on the electrical properties of Ce-doped WO3 ceramics prepared by nanopowders, J.phys.D:appl. Phys 40(2007):2573~2578.
*Zhu Yingwei, Wang Yu, Yan Zhongming, Dong Liang, Xie Xiaofang and Li Haitao. Multipole Field Electromagnetic Launcher[J]. IEEE Trans. on Mag., 2010, 46(7): 2622-2627.(SCI检索:20102613034115)
*朱英伟,严仲明,董亮,王豫.电容器参数对感应线圈炮的影响分析[J].高电压技术, 2009,35(12):3054-3059.(EI检索:20101512840582)
*朱英伟,严仲明,谢晓芳,董亮,王豫.磁阻型线圈发射减速力研究[J].电工电能新技术, 2010,29(2):62-66.
*李海涛,朱英伟,邵慧,董亮,严仲明,胡基士,王豫.超导储能磁体对电感性负载放电研究[J].电工电能新技术, 2010, 29(4):27-30.
*李海涛,董亮,邵慧,朱英伟,王豫.脉冲功率系统储能型超导脉冲变压器放电研究[J].低温与超导, 2011, 39(3):45-48.
*李海涛,董亮,严仲明,朱英伟,方万民,胡基士. 激光位置检测技术在电磁弹射中的应用设计,计算机测量与控制, 2010,18(2):316-319.
*李峰,严仲明,董亮,闫强华,朱英伟,王豫.小型NbTi磁体的失超传播特性研究[J].低温与超导,2009, 37(4):37-40.
*李峰,董亮,严仲明,肖广大,闫强华,王豫. 小型超导磁体的快速放电研究.电工电能新技术,2009,28(3):36-39.
*董亮,赵勇,王豫,李统业,李德柱. 前驱体纳米化后Ce掺杂WO3陶瓷的电学行为, 北京科技大学学报增刊. 28(2006) :220~222.
*董亮,王豫,严仲明,李统业,李德柱,固相合成法制备ZrW2O8陶瓷及其电学行为研究, 功能材料,2009,40(8):1282~1284.
*董亮,王豫,李德柱,李统业,严仲明,Ce掺杂WO3薄膜的电学性质研究,西南交通大学学报,2009,44(6):963~967.
*Zhong-Qiu Hua, Liang Dong,HaiQing Wang,Shujie Peng,Yu Wang, Varistor behavior study in undoped tungsten trioxide ceramics, Physica B,2011,doi.org/10.1016/j.physb.2011.04.033.
*Li Tong-ye, Wang Yu, Dong Liang. Novel Pr6O11 varistor, J.Cent.Sorth Univ. Technol. (2007): 42~46.
*Tong-Ye Li, Hong-Wang Zhao, Liang Dong, Na Guo and Yu Wang, Novel varistor material based on terbium oxide, J.phys. D:Appl Phys. 2009,42:1~4.
*Li, T. Y., Wang, H. Q., Hua, Z. Q., Dong, L., Zhao, H. W., Wang, Y. Densification and grain growth of CuO-doped Pr6O11 varistors. Ceramics International. 2010,36(5):1511~1516.
*Zhongqiu Hua, Yu Wang, Haiqing Wang, Liang Dong, NO2 sensing properties of WO3 varistor-type gas sensor, Sensors and Actuators B-Chemical. 2010,150:588~593.
*魏钦伟,胡基士,董亮,严仲明,朱英伟,王豫.基于ANSYS的脉冲超导磁体电磁结构耦合分析[J].科学技术与工程, 2009,9(15):4395-4398.
授权发明专利
专利、著作版权等
授权发明专利
*一种多极重接型电磁发射装置,发明专利,第一申请人,授权时间2019.3.1,ZL201611127476.7
*一种应用于铁路牵引供电的超导磁储能太阳能供电方案,国家发明专利,第一申请人,授权时间2018.2.6,2018.2.6,中国,ZL 201510816766.1
*一种超导XXX装置,发明专利,第一申请人,授权时间2014.7,ZL200910122123.1
*旋转XXX,发明专利,第二申请人,授权时间2013.5
*采用超导和常导线圈的混合式XXX,发明专利,第二申ࣺᯬ
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