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Biographic
Sketch
Li, Maoqiang
Professor and Principal Engineer, High Performance Ceramics
and Fine Processing Lab,
China Building Materials Academy
Beijing 100024, China
Tel. 86-10-6576 1331 ext. 2658,
Fax. 86-10-6572 1031
E-mail: liwu983@ihw.com.cn
Dr. Maoqiang Li graduated from Dept. of Silicate Technology,
Beijing Institute of Building Industry in 1965 and received
the Ph.D. from Dept. of Materials Science and Engineering,
Pennsylvania State University, U. S. A. in 1984. After his
graduation in 1965, he joined Research Institute of Building
Materials (the predecessor of China Building Materials Academy)
researching on refractories until he went to U. S. A. for
advanced study in 1981. He rejoined China Building Materials
Academy working on advanced ceramics, when he completed his
degree study at Penn State in 1984. He was appointed senior
engineer in 1987, and principal engineer in 1994. He was a
visiting scholar working on powder synthesis at Pennsylvania
State University during 1989 to 1990. Since 1998, Dr. Li has
served as professor, advisor for Ph.D. candidates, and principal
engineer at High Performance Ceramics and Fine Processing
Lab, CBMA. His research activities include powder synthesis
and characterization, ceramic processing, functional ceramics,
and refractories. He has authored more than 50 research papers.
He received a second award for development of the technique
for making fine and high purity zirconia powders used in electronic
industry, and a third award for study on characterization
of agglomerated ceramic powders from the State Bureau of Building
Materials Industry. Dr. Li is vice chairman of the Functional
Ceramics Committee of the Chinese Ceramic Society, vice chairman
of the Board of Directors of the Refractory Society, member
of the ultrafine particles committee of the Chinese Particle
Society, member of editorial committee of Journal of the Chinese
Ceramic Society, member of the International Executive Board
of UNITECR, senior member of IEEE, and member of the American
Ceramic Society.
1. 李懋强,迟卓男, 团聚粉料的流动性和成型性能, 硅酸盐学报,18(5),1990:406-413
2. Maoqiang Li and Gary L. Messing, Preparation of Spherical
Zirconia Particles by Controlled Coagulation in Zirconia Sols,
Ceramic Powder Science III ed. G. L. Messing, et al., Am.
Cer. Soc., 1990: 129-132
3. 李懋强,胡敦忠,迟卓男, 氧化锆粉料中团聚体的结构与强度, 硅酸盐学报,19(1),1991:75-79
4. Maoqiang Li, Dunzhong Hu, and Zhuonan Chi, Determination
of Agglomerate Strength in Zirconia Powders, Ceramic Powder
Science IV, ed. G. L. Messing, et al., Am. Cer. Soc., 1991:
377-385
5. 李懋强, 用陶瓷复合材料的概念设计人工骨生物材料, 中国建筑材料科学研究院学报, 3(4),1991:35-41
6. Maoqiang Li, The Mechanism of Formation of Spherical Zirconia
Particles From Zirconia Aqueous Sols, Proc. 1st Pacific Rim
Int'l Con. On Adv. Mat. Processing, TMS 1992: 23-27
7. Maoqiang Li, Shuying Zhang, Nanhua Tan, and Ruilian Yang,
The Corrosion Resistance of Zircon-Chromium Sesquioxide Composite
Refractories to Molten Glass, Proc. 2nd Int'l Symp. on Refractories,
ed. X. Zhong, International Academy Publishers, Beijing, 1992:
533-538
8. Maoqiang Li, Chunxuan Lu, Lingfang Zeng, Jiezeng Wang,
and Xufeng Chen, A Study on the Mechanism of Sintering of
Dolomite, ibid. 1992: 558-564
9. Proceedings of 2nd International Symposium on Refractories,
ed. by Zhong Xiangchong, Lu Jiaquan, Yan Xiangjian, and Li
Maoqiang, International Academy Publishers, Beijing, 1992
10. 李懋强, 湿化学法合成陶瓷粉料的基本原理, 硅酸盐学报,22(1),1994:85-91
11. Maoqiang Li, Synthesis of Zirconia Powder in Zirconia
Aqueous Sol, China's Refractories, 3(3), 1994: 10-13
12. 陈玉峰,李懋强, 薄膜型氧敏传感器的响应时间的测定, 传感器技术,No3,1995:16-19
13. 李懋强, 乳液法制备氧化锆粉料的研究, 粉体技术,1(3),1995:11-15
14. Maoqiang Li, Fundamentals of Sintering of Dolomite, Proc.
6th Int'l Symp. on Sintering, Int'l Acadeny Publishers, Beijing,
1995: 185-189
15. 彭建中,李懋强,王毅敏, 微波介质陶瓷在介质滤波器上的应用, 电子元件与材料, 15(1),1996:37-40
16. 李春燕, 李懋强, TiO2的溶胶-凝胶过程研究, 硅酸盐学报, 24(3),1996:338-341
17. 王毅敏,李懋强,彭建中, 聚合物分解法制备微波介质陶瓷粉料的研究, 粉体技术,2(3),1996:13-16
18. 陈玉峰,李懋强, 溶胶-凝胶方法制备薄膜型TiO2氧敏传感器,中国建材科技,4(3),1996:19-23
19. 李懋强, 复合钙钛矿型Ba(Mg1/3Ta2/3)O3中B位有序结构的研究,硅酸盐学报,24(5),1996:504-508
20. Maoqiang Li and Jianzhong Zhang, Development of Microstructure
During Sintering of a-Al2O3 Powder Compacts, Proc. Itn'l Symp.
on Refractories, Int'l Academy Publishers, 1996: 589-594
21. Yufeng Chen and Maoqiang Li, In Situ Hydrothermal Synthesis
of Xonotlite for Making Insulation Refractory, Proc. Itn'l
Symp. on Refractories, Int'l Academy Publishers, 1996: 356-359
22. Maoqiang Li and Yufeng Chen, An Investigation of Response
Time of TiO2 Thin Film Oxygen Sensor, Sensors and Actuators
B, 32, 1996: 83-85
23. Maoqiang Li, Fundamentals of Sintering of Dolomite, China's
Refractories, 5(4), 1996: 3-7
24. D. J. Barber, K. M. Moulding, Ji Zhou, and Maoqiang Li,
Structural Order in Ba(Zn1/3Ta2/3)O3, Ba(Zn1/3Nb2/3)O3, and
Ba(Mg1/3Ta2/3)O3 Microwave Dielectric Ceramics, J. Mater.
Sci., 32, 1997: 1531-1544
25. Maoqiang Li, Synthesis of Ba(Mg1/3Ta2/3)O3 with Complex
Perovskite Structure, Ferroelectrics, 195, 1997: 87-91
26. Maoqiang Li and Yufeng Chen, TiO2 Thin Film Oxygen Sensors,
ibid. 1997: 149-153
27. Maoqiang Li, Yufeng Chen, Qing Chang, and Shuqin Xia,
Making Ultralight Calcium Silicate Insulation Refractories,
Proc. UNITECR'97, v.1, Am. Cer. Soc., 1997: 1769-1776
28. 李懋强, 从液相制备陶瓷超细粉料的原理和方法, 粉体技术,4(1),1998:19-24
29. 李懋强,陈玉峰, 圆柱式氧化钛氧敏传感器技术报告,高性能陶瓷论文集,人民交通出版社,1998:68-70
30. 李懋强,陈玉峰, 氧敏测试装置的研制, 同上,1998:71-74
31. 陈玉峰,李懋强,薄膜型氧化钛氧敏传感器的制备, 同上,1998:90-94
32. 陈玉峰,李懋强,氧化钛氧敏传感器的响应时间的测量与研究, 同上,1998:95-99
33. Maoqiang Li, shuying Zhang, and Ruilian Yang, The Key
Technique of Manufacture of Dense Chromium Sesquioxide Refractory,
China's Refractories, 7(3), 1998: 11-13
34. Maoqiang Li, Preparation of Ultrafine Powders, Proc. 3rd
Int'l. Symp. on Refractories, ed. Wang Jinxiang, Li Maoqiang,
Dai Longda, and Xu Ysnqing, 1998: 25-28
35. 李懋强,彭炳林,杨文颐,注浆胶凝法陶瓷成型工艺,材料导报(Materials Review)专辑(第十一届全国高技术陶瓷学术会议论文集),2000:113-115
36. 李懋强,超细粉体的化学合成,中国粉体技术(China Powder Science and Technology),6(6)2000:21-31
37. 李懋强,一种从无机锆盐水溶液制备球形氧化锆颗粒的方法和原理,中国粉体技术,6(5)2000:13-18
38. 李懋强,陈玉峰,夏淑琴,李建辉,梁宏勋,超轻微孔硅酸钙绝热材料的显微结构和工艺控制,硅酸盐学报,28(5)2000:401-406
39. 梁鸿勋,李懋强,陈玉峰,夏淑琴,李建辉,动态水热法合成硬硅钙石的研究,材料导报(Materials Review)专辑(第十一届全国高技术陶瓷学术会议论文集),2000:35-37
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