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冯可芹

 

 

姓名:冯可芹

职称:教授

导师情况: 博士生导师

电话:13628058806

传真:028-85460940

     邮箱:kqfeng@scu.edu.cn

招生方向:材料加工工程

教育背景及工作经历
 

教育背景

1987.9-1991.6: 重庆大学钢铁冶金专业,本科

1991.9-1994.7: 重庆大学钢铁冶金专业,硕士

2000.9-2004.12:四川大学材料学专业,博士


工作经历

1994.7-1996.6:成都科技大学金属材料系,助教

1996.6-2001.6:四川大学制造科学与工程学院,讲师

2001.6-2006.6:四川大学制造科学与工程学院,副教授

2006.6-至  今:四川大学beat365手机版官方网站,教授

2005.9-2007.9:重庆大学博士后

2007.10-2008.10:美国加州大学戴维斯分校,访问学者

2009.7-至  今:四川大学beat365手机版官方网站,博士生导师

总体介绍
 

长期从事材料成型和制备、冶金工程方面的教学与研究工作,主要从事金属-陶瓷复合材料、钒钛资源综合利用、外场辅助材料的合成与制备、材料制备和冶金过程的物理化学等方面的研究。作为项目负责人主持国家自然科学基金、教育部留学回国人员科研启动基金、中国博士后科学基金、四川省重点研发、四川省科技支撑、四川省学术和技术带头人培养资金、市级科技项目等纵向项目,以及多项横向科研项目;在Journal of Alloys and Compounds、Materials Science and Engineering A、Materials & Design、International Journal of Refractory Metals and Hard Materials、 RSC Advances等学术期刊上发表学术论文140余篇(SCI收录53篇、EI收录82篇);已获授权国家发明专利10项、授权实用新型专利4项。连续5年获得“四川大学青年骨干教师”称号,多次获得“四川大学课堂教学质量优秀奖”;所培养的博士和硕士研究生中多名获得“四川大学学术之星”称号。

开设课程
 

本科:材料加工冶金传输原理、粉末冶金工程、材料成型学科专业前沿探讨

研究生:复合材料(博士)、材料合金热力学(硕士)

研究领域及在研项目
 研究领域:

1.金属-陶瓷复合材料

2.钒钛资源综合利用

3.外场辅助材料合成与制备、

4.材料制备和冶金过程的物理化学


在研项目:

1.国家自然科学基金面上项目:W-Mo-Cu复合材料优化设计及其电场快速烧结的基础研究

2.四川省重点研发项目:连接碳化硅陶瓷的新型锆基活性钎料开发研究

3.四川大学-攀枝花校市战略合作项目:利用高钛型高炉渣制备微晶泡沫玻璃吸声材料的开发研究

4.四川省科技支撑计划项目:特种玻璃制备关键技术研究及示范

5.四川省科技支撑计划项目:攀枝花钒钛磁铁矿原位反应烧结制备铁基摩擦材料

6.攀枝花市高新技术及产业化项目:利用攀钢高钛型高炉渣制备微晶泡沫玻璃的关键技术研究

7.攀枝花市高新技术及产业化项目:采用钒钛磁铁矿直接制备铁基摩擦材料性能提高的技术研究

授权专利

1.国家发明专利:一种以大电流电阻烧结制备钨钼铜复合材料的方法,ZL201710983770.6

2.国家发明专利:一种以放电等离子烧结制备钨钼铜复合材料的方法,ZL 201710554304.6

3.国家发明专利:以高钛高炉渣和废玻璃粉制备微晶泡沫玻璃的的方法, ZL201310150838.4

4.国家发明专利:一种利用钒钛磁铁矿碳热原位反应烧结制备铁基摩擦材料的方法,ZL201310361592.5

5.国家发明专利:利用钒钛磁铁矿真空碳热原位反应烧结制备铁基摩擦材料的方法,ZL201310361540.8

6.国家发明专利:利用钒钛磁铁矿原位反应烧结制备铁基摩擦材料的方法,ZL201210256454.6

7.国家发明专利:利用电场低温快速烧结钕铁硼磁体的方法,ZL200510020794.9

8.国家发明专利:大电流制备铁基复合材料及硬质合金的方法, ZL03135457.2

9.国家发明专利:铁基梯度表面复合材料梃杆及其制造方法,ZL00113186.9

10.国家发明专利:铁基梯度表面复合材料凸轮轴及其制造方法,ZL00113185.0

 
发表论文

 1. Keqin Feng, Hongsheng Chen, Ji Xiong, Zhixing Guo. Investigation on diffusion bonding of functionally graded WC–Co/Ni composite and stainless steel, Materials & Design, 2013,V46.p622-626.

2. K. Q. Feng, M. Hong, J. Xiong, H. Y. Fan, Z. X. Guo. Mechanism of Combustion Synthesis of TiC-Fe Composites under the Action of an Electric Field, Powder Metallurgy,  2012,V55.n3,p235-241.

3. Keqin Feng, Ji Xiong, Lan Sun, Hongyuan Fan, Xiang Zhou, The Process of Combustion Synthesis of WC-Co Composites under the Action of an Electric Field. Journal of Alloys and Compounds, 2010,V504,n1,p277-283.

4. Keqin Feng, Mei Hong,Yi Yang, Wenjuan Wang . Combustion Synthesis of VC/Fe Composites under the Action of an Electric Field, International Journal of Refractory Metals and Hard Materials, 2009,V27.p852-857.

5. Keqin Feng,  Yi Yang,  Mei Hong ,  Jinling Wu,  Shanshan Lan. Intensified Sintering of Iron Powders under the Action of an Electric Field: Effect of Technologic Parameter on Sintering Densification, Journal  of  Materials Processing Technology, 2008, 208, p264-269.

6. Feng K, Yang Y, Shen B, Guo L, He H. Rapid sintering of iron powders under the action of electric field,Powder Metallurgy, 2005,V48.n2,p203-204.

7. Keqin Feng, Yi Yang, Baoluo Shen, Lubao Guo. In-Situ Synthesis of TiC/Fe Composites by Reaction Casting,Materials & Design, 2005.V26, p37-40.

8. Keqin Feng,Chenguang Bai, Yi Yang,Wenjuan Wang,  Fang Ji. Combustion Synthesis of TiC-Fe Composites under the Action of an Electric Field,  ISIJ International, 2007, V47.n5,p648-651.

9. Hongling Zhou , Keqin Feng*, Yaohong Xiao , Yanfang Liu , Sixuan Ke. Pressure effects on a novel W-Mo-Cu alloy by large current electric field sintering: sintering behavior, microstructure and properties, Journal of Alloys and Compounds, 2019,V785, p965-971.

10. Sixuan Ke, Keqin Feng*, Hongling Zhou, Yue Shui. Phase evolution of Mo-W-Cu alloy rapid prepared by spark plasma sintering”, Journal of Alloys and Compounds, 2019,V775, p784-789.

11. Hong-ling Zhou, Ke-qin Feng*, Si-xuan Ke, Yan-fang Liu. Densification and properties investigation of W-Mo-Cu composites prepared by large current electric field sintering with different technologic parameter, Journal of Alloys and Compounds, 2018,V767, p567-574.

12. Dajun ZHAI, Keqin FENG*, Huifang YUE. Growth kinetics of microarc oxidation TiO2 ceramic film on Ti6Al4V alloy in tetraborate electrolyte,  Metallurgical and Materials Transactions A , 2019,V50A, p2507-2518.

13. Dajun Zhai, Yue Shui, Keqin Feng*, Yanyan Zhang. Effects of rare-earth oxides on microstructure and properties of Fe-based friction materials synthesized by: in-situ carbothermic reaction from vanadium-bearing titanomagnetite concentrates, RSC Advances, 2019. n9, p20687–20697.

14. Bofang Zhou, Jinfeng Wang, Keqin Feng*, Study on the wetting interface of Zr-Cu alloys on the SiC ceramic surface,RSC Advances, 2020. n10, 3487-3492.

15. Da-jun ZHAI, Ke-qin FENG*, Preparation of micro/nano-structured ceramic coatings on Ti6Al4V alloy by plasma electrolytic oxidation process in NaF electrolyte, Transactions of Nonferrous Metals Society of China, 2019, V29, p2546-2555.

16. Zidi Yan, Keqin Feng*, Jian Tian, Yanfang Liu,Effect of high titanium blast furnace slag on preparing foam glass–ceramics for sound absorption, Journal of Porous Material, 2019,V26, p1209-1251.

17. Yue Shui,Keqin Feng*,Yanyan Zhang,Zidi Yan. Influence of Mn on the iron-based friction material directly prepared by in-situ carbothermic reaction from vanadium-bearing titanomagnetite concentrates,RSC Advances, 2018, n8, p36503–36511.

18. Bofang Zhou,Keqin Feng*. Zr-Cu alloy filler metal for brazing SiC ceramic,RSC Advances, 2018,V8, n46, p26251-26254.

19. SixuanKe, Keqin Feng*, Hongling Zhou, Yue Shui. Sintering process and particles migration mechanism of rapid sintering of W-Cu composites, Materials and Manufacturing Processes, 2017, V32, n12, p1398-1402.

20. Bofang Zhou, Keqin Feng*, Hongling Zhou, Joining of SiC ceramic by using the liquid polyvinylphenylsiloxane”,Advances in Applied Ceramics,2018,V117, n4, p212-216.

21. Rui Zhang, Keqin Feng*, Junhu Meng, Fuyan Liu, Shufang Ren, Wanxiu Hai, AijunZhang. Tribological Behavior of Ti3SiC2 and Ti3SiC2/Pb Composites Sliding Against Ni-based Alloys at Elevated Temperatures, Ceramics International, 2016,V42, p7107-7117.

22. Rui Zhang, Keqin Feng, Junhu Meng, Bo Su, Shufang Ren, Wanxiu Hai. Synthesis and characterization of spark plasma sintered Ti3SiC2/Pb composites, Ceramics International, 2015, V41, 10380-10386.
23. Guangming Zhang, Keqin Feng*, Ying Li, Huifang Yue. Effects of Sintering Process on Preparing Iron-based Friction Material Directly from Vanadium-bearing Titanomagnetite Concentrates, Materials & Design, 2015,V86, p616-620.

24. Yaohong Xiao, KeqinFeng*, Hongsheng Chen, Yu Zhou, Ying Li, Huan Shi. Fabrication and micro-structure of a multilayer functionally graded (WC–Co)-Ni composite, Journal of Alloys and Compounds, 2015, V631, p77-81.  

25. Haibo Wang, Keqin Feng*, Yu Zhou , Qingzhu Sun Huan Shi. Effects Na2B4O7·5H2O on the properties of foam glass from waste glass and titania-bearing blast furnace slag, Materials Letters,2014, V132, p176-178.

26. Hongsheng Chen, Keqin Feng*,Ji Xiong,Zhixing Guo.  Characterization and stress relaxation of the functionally graded WC–Co/Ni component/stainless steel joint,Journal of Alloys and Compounds, 2013,V557, p18-22.

27. Hongsheng Chen, Keqin Feng*,Ji Xiong,Jianjun Luo, Zhixing Guo, Hui Wang. Characterization and forming process of a functionally graded WC–Co/Ni composite, International Journal of Refractory Metals and Hard Materials,2012, V35, p306-310.

28. Hongsheng Chen, Keqin Feng*,Shifeng Wei,Ji Xiong,Zhixing Guo,Hui Wang. Microstructure and properties of WC–Co/3Cr13 joints brazed using Ni electroplated interlayer,  International Journal of Refractory Metals and Hard Materials,2012, V33, p70-74.

29. Shifeng Wei, Keqin Feng*,Hongshen Chen, Ji Xiong, Hongyuan Fan, Guangming Zhang,Hui Wang. Combustion synthesis of TiC/Fe-Cu composites under an electric field, Journal of Alloys and Compounds, 2012,V541, p186-191.

30. Xiang Zhou, Keqin Feng*, Shifeng Wei,  Rui Zhang,  Ji Xiong,  Hongyuan Fan. Effect of pressure on combustion synthesis of TiC/Fe-Cu composites under the action of electric current, International Journal of Refractory Metals and Hard Materials,2012, V31, p109-113.



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