粉末冶金与先进陶瓷研究所

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材料系 材加系 材物系 无机系 粉末冶金与先进陶瓷研究所

 

姓  名: 张迎春
所在系所: 粉末冶金与先进陶瓷研究所
职  务: 副所长
职  称: 教授
通信地址: 北京市海淀区学院路30号大阳城8722(中国)责任有限公司
邮  编: 100083
办公地点: 特陶研究室206
电  话: 010-62334951
邮  箱: zhang@ustb.edu.cn
传  真: 010-62334951

     

    1.信息功能陶瓷材料;

    2.新型薄膜与涂层制备技术;

    3.陶瓷材料光固化3D打印技术;

    4.激光透明陶瓷制备技术;

    5.空间太阳能电站关键材料;

    6.锂离子电池钛酸锂电极材料。

     

    20041月毕业于清华大学材料科学与工程系,获工学博士学位;

    20143-9月,美国西北大学(Northwestern University)材料科学与工程系访问学者。

    1.本科生必修课《无机材料结晶学基础》,

    2.研究生选修课《信息功能陶瓷材料》。

     

    1.      Liang Cai, Xin Hu, Guangfan Tan, Guangbin Li, Yingchun Zhang, Accurate and uniform fabrication of Li2TiO3 pebbles with high properties based on Stereolithography technology, Journal of the European Ceramic Society, 2020, 41: 2114-2123.

    2.      Wang Shiyuan; Zhang Yingchun, Structure, bond characteristics and microwave dielectric properties of new A(0.75)Ti(0.75)Ta(1.5)O(6) (A=Ni, Co, Zn and Mg) ceramics based on complex chemical bond theory, Journal of the European Ceramic Society, 2020, 40(4): 1181-1185.

    3.      Yun Zhang, Shuya Liu,Yingchun Zhang, Maoqiao Xiang. Low temperature synthesis of CoNb2O6 microwave dielectric ceramics. Journal of the American Ceramic Society, 2016, 99: 2871-2874.

    4.      Yun Zhang, Yingchun Zhang, Maoqiao Xaing. Crystal structure and microwave dielectric characteristics of Zr-substituted CoTiNb2O8 ceramics. Journal of the European Ceramic Society, 2016, 36: 1945-1951

    5.      Yun Zhang, Yingchun Zhang. Microwave dielectric properties of sol-gel derived CoTiNb2O8 ceramics. Journal of Alloys and Compounds, 2016, 683: 86-91.

    6.      Yun Zhang, Yingchun Zhang, Maoqiao Xaing. Microwave dielectric properties of temperature stable CoTiNb2O8-CoNb2O6 composite ceramics. Materials Letters, 2016, 178: 175-177.

    7.      Yun Zhang, Yingchun Zhang, Maoqiao Xaing, Shuya Liu, Hui Liu. Low temperature sintering and microwave dielectric properties of CoTiNb2O8 ceramics with CuO addition. Ceramics International, 2016, 42: 3542-3547.

    8.      Yun Zhang, Yingchun Zhang,Baojian Fu, Ming Hong, Maoqiao Xiang. Permittivity of citrate sol-gel derived Bi2Ti4O11 dielectric ceramics. Ceramics International, 2015, 41: 10243-10249.

    9.      Xiang, Maoqiao, Zhang, Yingchun, Hong, Ming, et al., CO2 absorption properties of Ti- and Na-doped porous Li4SiO4 prepared by a sol-gel process. Journal of Materials Science, 2015, Vol. 50, 13 : 4698-4706.

    10.  Xiang Maoqiao, Zhang Yingchun, Wang Chaofu, Zhang Yun, Liu Wei. Preparation of Li4SiO4-xLi2O powders and pebbles for advanced tritium breeders. Ceramics International, 2017, 43(2): 2314-2319. 

    11.  Jiang Fan, Zhang Yingchun, Sun Ningbo, et al., Effect of pulse current parameters on microstructure of tungsten coating electroplated from Na2WO4-WO3-NaPO3. Applied Surface Science, 2015, Vol.331 : 278-284.

    12.  Jiang Fan, Zhang Yingchun, Sun Ningbo, et al., Tungsten coating prepared on molybdenum substrate by electrodeposition from molten salt in air atmosphere. Applied Surface Science, 2015, Vol327 : 432-436.

    13.  Jiang Fan, Zhang Yingchun, Sun Ningbo, et al., Effect of direct current density on microstructure of tungsten coating electroplated from Na2WO4-WO3-NaPO3 system. Applied Surface Science, 2014, Vol.317 : 867-874.

    14.  Xiang Maoqiao, Zhang Yingchun, Zhang Yun, Wang Chaofu. Effects of grain size and porosity on strength of Li2TiO3 tritium breeding pebbles and its grain growth behavior. Journal of Nuclear Materials, 2016, 482: 163-169

    15.  Xiang Maoqiao, Zhang Yingchun, Zhang Yun, Liu Shuya, Liu Hui,. Preparation of Li2TiO3–Li4SiO4 core–shell ceramic pebbles with enhanced crush load by graphite bed process. Journal of Nuclear Materials, 2015, 466: 477-483

     

     

    1.国家重点研发研发专项,2019YFE03130002,课题负责人。

    2.国家自然科学基金:热等静压烧结AO-TiO2-M2O5体系陶瓷晶体结构演化、调控及微波介电性能研究,No.51772022

    3.国家自然科学基金:固态氚增殖材料新型孔道结构设计及释氚性能改善机理研究,No. 51972018

     

    5. 国家电投集团科学技术研究院合作项目:Fe3O4涂层制备技术,2019

    6. 中国科学院合作项目:毫米级锂基陶瓷微球的研制,2020

     

    1.2007年入选教育部新世纪优秀人才培养计划;

    2.2007年获黑龙江省优秀教师;

    3.2005年获中国煤炭工业科学技术一等奖(第三); 

    4.2007年获国土资源部科学技术二等奖(第四)。