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副研究员/高级工程师

董亚强
日期:2015-11-24, 查看:14253
 

董亚强,博士

“关键人才” 高级工程师,硕士生导师

   邮箱:dongyq@nimte.ac.cn

研究方向:

    1. 微细金属粉末的制备技术; 2. 非晶纳米晶软磁复合材料的制备及应用。

学习工作经历:       

    2016.01~至今:中国科学院宁波材料技术与工程研究所,高级工程师;

    2015.08~2015.12:中国科学院宁波材料技术与工程研究所,助理研究员;

    2013.02~2015.07:中国科学院宁波材料技术与工程研究所,博士后;

    2007.09~2013.01:中国科学院宁波材料技术与工程研究所,博士;

    2003.09~2007.07:郑州大学,学士。

    作为项目负责人,主持有国家自然科学基金青年基金、中科院科技网络服务计划项目(STS项目)、宁波市科技创新2025重大专项和宁波市自然科学基金等纵向项目和多项企业合作项目,同时,作为项目骨干参与了科技部重点研发计划项目、中国科学院科研装备研制项目及浙江省公益技术研究工业项目等重要项目,在高性能软磁粉末制备及软磁粉芯的性能优化方面取得了重要进展。目前在国际知名学术期刊上发表SCI论文51篇,申报国家发明专利24项,其中6项已授权。

承担项目列表:

     主持项目:

1. 中国科学院STS计划项目:高性能非晶纳米晶合金宽带产业化,2019.01~2019.12;

2. 宁波市“科技创新2025”重大专项:细颗粒软磁粉体材料与模压电感研发及产业化,2018.06~2021.12;

3. 国家自然科学基金青年基金:纳米铁氧体包覆对铁基非晶磁粉芯性能的影响及其机理研究,2017.01~2019.12;

4. 宁波市自然科学基金:新型铁基纳米晶复合材料的制备及性能研究,2016.08~2018.07;

5. 宁波市自然科学基金:高Bs低损耗铁基非晶磁粉芯的制备及性能研究,2015.01~2016.12;

6. 企业项目:超薄片状磁性粉末的制备及性能研究;

7. 企业项目:高频低损软磁合金粉末开发;

8. 企业项目:功能性粉末制备关键技术研发中心;

9. 企业项目:微细金属粉末制备装备工程技术中心;

  10. 企业项目:纳米晶化铁硅铝磁粉的制备与性能研究。

   参与项目:

   1. 国家重点研发计划:特种软磁合金原子团簇与宏观性能关联及性能调控机理研究,2016.07~2020.06;

   2. 国家自然科学基金面上基金:铁基非晶软磁合金的微观结构演化及性能的关联研究,2017.01~2020.12;

   3. 国家自然科学基金面上基金:铁基非晶软磁涂层的制备及其磁屏蔽特性研究,2016.01~2019.12;

   4. 中国科学院科研装备研制项目:微细球状非晶粉末制备装置,2015.01~2016.12;

   5. 浙江省公益技术研究工业项目:新型铁基非晶复合材料的开发及应用研究,2016.01~2017.12。

文章列表:

  1. Bang Zhou, Qiang Chi, Yaqiang Dong*, Lei Liu, Yiqun Zhang, Liang Chang, Yan Pan, Aina He, Jiawei Li, Xinmin Wang, Effects of annealing on the magnetic properties of Fe-based amorphous powder cores with inorganic-organic hybrid insulating layer, Journal of Magnetism and Magnetic Materials, 494 (2020) 165827.
  2. Huiyun Xiao, Anding Wang, Jiawei Li, Aina He*, Tao Liu, Yaqiang Dong*, Hai Guo, Xincai Liu, Structural evolutionary process and interrelation for FeSiBNbCuMo nanocrystalline alloy,Journal of Alloys and Compounds, 821 (2020) 153487.
  3.  

    Man Q. K., Sun H. J., Dong Y. Q., Shen B. L.*, Kimura H., Makino A., Inoue A. Enhancement of glass-forming ability of CoFeBSiNb bulk glassy alloys with excellent soft-magnetic properties and superhigh strength, Intermetallics, 2010, 18(10): 1876-1879.

  4. Bang Zhou, Yaqiang Dong*, Lei Liu, Liang Chang, Fengqin Bi*, Xinmin Wang, Enhanced soft magnetic properties of the Fe-based amorphous powder cores with novel TiO2 insulation coating layer, Journal of Magnetism and Magnetic Materials, 474 (2019) 1-8.
  5. Chuntao Chang, Junjiang Guo, Qiang Li*, Shouming Zhou, Min Liu,Yaqiang Dong*, Improvement of soft magnetic properties of FeSiBPNb amorphous powder cores by addition of FeSi powder, Journal of Alloys and Compounds, 788 (2019) 1177-1181.
  6. Lei Liu, Bang Zhou, Yiqun Zhang, Aina He, Tao Zhang, Fushan Li*, Yaqiang Dong*, Xinmin Wang, FeSiBPNbCu Bulk Nanocrystalline Alloys with High GFA and Excellent Soft-Magnetic Properties, Metals, 9 (2019) 219.
  7. Bang Zhou, Yaqiang Dong*, Lei Liu, Qiang Chi, Yiqun Zhang, Liang Chang, Fengqin Bi*, Xinmin Wang, The core-shell structured Fe-based amorphous magnetic powder cores with excellent magnetic properties, Advanced Powder Technology, 30 (2019) 1504-1512.
  8. Yiqun Zhang, Yaqiang Dong*, Lei Liu, Liang Chang,Bang Zhou,Qiang Chi, Xinmin Wang, High filling alumina/epoxy nanocomposite as coating layer for Fe-based amorphous powder cores with enhanced magnetic performance, Journal of Materials Science: Materials in Electronics, 30 (2019) 14869-14877.
  9. Liang Chang, Yiqun Zhang, Yaqiang Dong*, Qiang Li*, Aina He, Chuntao Chang, Xinmin Wang, Enhanced magnetic properties of Fe-based nanocrystalline composites by addition of carbonyl iron powders, SN Applied Sciences, 1 (2019) 902.
  10. Huiyun Xiao, Yaqiang Dong, Aina He*, Hao Sun, Anding Wang*, Hu Lia, Lei Liua,Xincai Liu*, Run-wei Li, Magnetic softness and magnetization dynamics of FeSiBNbCu(P,Mo) nanocrystalline alloys with good high-frequency characterization, Journal of Magnetism and Magnetic Materials, 478 (2019) 192-197.
  11. Liang Chang, Lei Xie, Min Liu, Qiang Li*,Yaqiang Dong*, Chuntao Chang*, Xin-Min Wang, Akihisa Inoue. Novel Fe-based nanocrystalline powder cores with excellent magnetic properties produced using gas-atomized powder. Journal of Magnetism and Magnetic Materials, 452 (2018) 442-446.
  12. Min Liu, Keyu Huang, Lei Liu, Tong Li, Pingping Cai, Yaqiang Dong*, Xin-Min Wang. Fabrication and magnetic properties of Novel Fe-based amorphous powder and corresponding powder cores. Journal of Materials Science: Materials in Electronics, 29 (2018) 6092-6097.
  13. Huang keyu, Dong yaqiang*, Liu min, Ren jihang, Lu shuhan, Zhao zhankui*, Chang chuntao*, Wang xinmin, Controllable SiO2 coating layer of FeSiBPNb amorphous powder cores with excellent soft magnetic properties, Journal of Iron and Steel Research, International, 25 (2018) 624-629.
  14. Chuntao Chang*, Yaqiang Dong*, Min Liu, Houqiang Guo, Qiang Xiao, Yunfan Zhang, Low core loss combined with high permeability for Fe-based amorphous powder cores produced by gas atomization powders, Journal of Alloys and Compounds,766(2018)959-963.
  15. Tong Li, Yaqiang Dong*, Lei Liu, Min Liu, Xiangzhong Shi*, Xue Dong, Qiongyan Rong, Novel Fe-based nanocrystalline powder cores with high performance prepared by using industrial materials, Intermetallics, 102 (2018) 101-105.
  16. Jijun Zhang, Yaqiang Dong, Luyang Bie, Qiang Li*, Jiawei Li*,Xin-min Wang,Influences of the preparation techniques on glass forming ability of Fe–P–B–Si–C amorphous alloys,Journal of Iron and Steel Research, International, 25 (2018) 674-679.
  17. Yaqiang Dong, Zichao Li, Min Liu, Chuntao Chang*, Fushan Li*, Xin-Min Wang. The effects of field annealing on the magnetic properties of FeSiB amorphous powder cores. Materials Research Bulletin, 96 (2017) 160-163.
  18.  Xiaolong Li, Yaqiang Dong*, Min Liu, Chuntao Chang*, Junqiang Wang, Xin-Min Wang. New Fe-based amorphous soft magnetic composites with significant enhancement of magnetic properties by compositing with nano-(NiZn)Fe2O4. Journal of Alloys and Compounds, 696 (2017) 1323~1328.
  19. Zichao Li, Yaqiang Dong*, Simon Pauly, Chuntao Chang*, Ran Wei, Fushan Li*, Xin-Min Wang. Enhanced soft magnetic properties of Fe-based amorphous powder cores by longitude magnetic field annealing. Journal of Alloys and Compounds, 706 (2017) 1-6.
  20. Zichao Li, Yaqiang Dong, Fushan Li*, Chuntao Chang*, Xin-Min Wang, Run-Wei Li. Fe78Si9B13 amorphous powder core with improved magnetic properties. Journal of Materials Science: Materials in Electronics, 2017, 28(2): 1180-1185.
  21. Junjiang Guo, Yaqiang Dong, Qikui Man, Qiang Li*, Chuntao Chang*, Xin-Min Wang, Run-Wei Li. Fabrication of FeSiBPNb amorphous powder cores with high DC-biasand excellent soft magnetic properties. Journal of Magnetism and Magnetic Materials, 2016, 401: 432-435.
  22. Yaqiang Dong, Qikui Man, Jijun Zhang, Chuntao Chang*, Run-Wei Li, Xin-Min Wang. Fabrication of FePBNbCr glassy cores with good soft magnetic properties by hot pressing, IEEE Transactions on Magnetics, 51(11), 2015.
  23. Yaqiang Dong, Qikui Man, Chuntao Chang*, Baolong Shen*, Xin-Min Wang, Run-Wei Li. Preparation and magnetic properties of (Co0.6Fe0.3Ni0.1)70-x(B0.811Si0.189)25+xNb5 bulk glassy alloys, Journal of Materials Science: Materials in Electronics, 26, 7006–7012, 2015.
  24. Jian Qiang, Diana Estevez, Yaqiang Dong, Qikui Man*, Chuntao Chang, Xinmin Wang, Run-Wei Li. Giant magnetoimpedance effect enhanced by thermoplastic drawing, Journal of Applied Physics, 116, 093911, 2014.
  25. Qikui Man, Akihisa Inoue, Yaqiang Dong, Jian Qiang, Chengliang Zhao, Baolong Shen*. A new CoFe-based bulk metallic glasses with high thermoplastic forming ability, Scripta Materialia, 69, 553–556, 2013.
  26. Yaqiang Dong, Qikui Man, Zhidong Zhang, Baolong Shen*. The soft magnetic properties of ring-shaped (Co0.6Fe0.3Ni0.1)68(B0.811Si0.189)27Nb5 bulk metallic glasses, Journal of Applied Physics, 113, 17A336, 2013.
  27. Dong Y. Q., Man Q. K., Shen B. L*. Effect of Nb addition on the glass-forming ability, soft-magnetic properties and mechanical properties of CoFeNiBSiNb bulk glassy alloys. Materials Science Forum, 745-746, 815-822, 2013.
  28. Qikui Man, Akihisa Inoue, Yaqiang Dong, Jian Qiang, Chengliang Zhao and Baolong Shen*. new CoFe-based bulk metallic glasses with high thermoplastic forming ability. Scripta Materialia, 69 (2013) 553–556.
  29. Yangqiang Dong, Anding Wang, Qikui Man, Baolong Shen*, (Co1-xFex)68B21.9Si5.1Nb5 bulk glassy alloys with high glass-forming ability, excellent soft-magnetic properties and superhigh fracture strength. Intermetallics, 2012, 23: 63-67.
  30. Y. Q. Dong, Q. K. Man, H. J. Sun, B. L. Shen*, S. J. Pang, T. Zhang, A. Makino, A. Inoue, Glass-forming ability and soft magnetic properties of (Co0.6Fe0.3Ni0.1)67B22+xSi6xNb5 bulk glassy alloys. Journal of Alloys and Compounds. 2011, 509S: S206-S209.
  31. Sun H. J., Man Q. K., Dong Y. Q., Shen B. L.*, Kimura H., Makino A., Inoue A. Effect of Nb addition on the glass-forming ability, mechanical and soft-magnetic properties in (Co0.942Fe0.058)72xNbxB22.4Si5.6 bulk glassy alloys, Journal of Alloys and Compounds, 2010, 504S: S31-S33.
  32. Sun H. J., Man Q. K., Dong Y. Q., Shen B. L.*, Kimura H., Makino A., Inoue A. Effects of B and Si contents on glass-forming ability and soft-magnetic properties in (Co0.89Fe0.057Nb0.053)100-x(B0.8Si0.2)x glassy alloys, Journal of Applied Physics, 2010, 107: 09A319.
  33. Man Q. K., Sun H. J., Dong Y. Q., Shen B. L.*, Kimura H., Makino A., A. Inoue. Glass-forming ability and magnetic properties of CoFeMoYB bulk glassy alloys with large supercooled liquid region, Journal of Alloys and Compounds, 2010, 504S: S132-S134.

申请专利:

 

  1. 董亚强,张许行,门贺,郭海,贺爱娜,黎嘉威,一种铁基纳米晶软磁合金,申请号:201911374563.6. 
  2. 黎嘉威,刘延新,贺爱娜,董亚强,一种兼具高热稳定性、高磁导率和高耐腐蚀性能的纳米晶软磁合金的制备方法,申请号:201911108908.3.
  3. 沈宝龙,满其奎,孙怀君,董亚强,钴基大块非晶合金及其制备方法, 申请号:200910098065.3(已授权)。
  4. 董亚强,贺爱娜,黎嘉威,李润伟,一种高Bs高频低损耗纳米晶磁粉芯的制备方法,申请号:201910846068.4.
  5. 董亚强,张艺群,黎嘉威,贺爱娜,李润伟,一种非晶纳米晶软磁粉芯的制备方法,申请号:201910846097.0.
  6. 董亚强,周帮,贺爱娜,黎嘉威,李润伟,一种软磁粉芯的制备方法,申请号:201910254892.0.
  7. 贺爱娜,董亚强,黎嘉威,满其奎,李润伟,一种基于非晶纳米晶异型磁芯的直放式电流传感器,申请号:201910140741.2.
  8. 贺爱娜,董亚强,黎嘉威,肖恢芸,曹艺,李润伟,一种纳米晶合金磁芯及其制备方法,申请号:201910170890.3.
  9. 贺爱娜,李虎,董亚强,黎嘉威,李润伟, 一种无铜纳米晶软磁合金及其制备方法,申请号:201910281708.1.
  10. 董亚强,刘珉,黄柯瑜,刘磊,李童,王新敏,一种低损耗非晶磁粉芯的制备方法,申请号:201810117282.1.
  11. 黎嘉威,郑爽,王新敏,董亚强,张继君,一种高稳定性铁基非晶合金、粉末及其涂层,申请号:201810341614.4.
  12. 陈淑文,满其奎,谭果果,顾习胜,董亚强,李润伟,一种高磁导率电磁波吸收材料及其制备方法,申请号:2018105345887.7.
  13. 王安定,肖恢芸,贺爱娜,刘新才,董亚强,满其奎,李润伟,一种高磁感高频铁基纳米晶软磁合金及其制备方法,申请号:201810341629.0.
  14. 董亚强,李童,刘磊,周帮,贺爱娜,黎嘉威,王新敏,一种用铁基纳米晶粉末制备磁粉芯的方法,申请号:201811034588.7.
  15. 黎嘉威,王文泉,董亚强,贺爱娜,一种含氮铁基非晶纳米晶软磁合金及其制备方法,申请号:201811442720.8.
  16. 黎嘉威,王文泉,董亚强,贺爱娜,李润伟,一种高磁感氮耦合铁基非晶纳米晶合金及其制备方法,申请号:201811597955.4 (已授权)。
  17. 董亚强,常春涛,李小龙,刘珉,王新敏,非晶磁粉芯前驱体颗粒、非晶磁粉芯及其制备方法,申请号:201610914730.1.
  18. 董亚强,常春涛,满其奎,黎嘉威,李润伟。一种微细金属粉末的制备方法及实现该方法的设备,申请号:201410421086.5 (已授权)。
  19. 董亚强,常春涛,满其奎,黎嘉威,李润伟。非晶态粉末的制备方法及装置,申请号:201410335843.7 (已授权)。
  20. 常春涛,黎嘉威,马浩然,董亚强,满其奎,王新敏,李润伟,一种铁基非晶粉末的尖角钝化方法,申请号:201510549456.8 (已授权)。
  21. 黎嘉威,常春涛,马浩然,董亚强,满其奎,王新敏,李润伟,一种铁基非晶合金、其粉末材料以及耐磨防腐涂层,申请号:201510364350.0 (已授权)。