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邱丰

发布日期:2017-10-18 作者: 编辑: 点击:

基本情况

 

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姓名:邱丰

性别:男

职称:教授

所在系别:材料加工工程

是否博导:是

最高学历:研究生

最高学位:博士

电话:13604402407

Email:qiufeng@jlu.edu.cn

备注:https://www.researchgate.net/profile/Feng_Qiu17

 

 

 

 

详细情况
所在学科专业: 材料加工工程
所研究方向:

纳米介质、高性能结构材料微观组织性能的协同调控

纳米调控金属熔化焊及塑性连接

纳米功能陶瓷及复合材料功能化应用

讲授课程:

材料成型原理与工艺 本科生 16/48学时 (秋季学期)

金属材料强韧化原理与技术 硕士研究生20/20学时 (春季学期)

液态成型研究新进展 本科生 2/24学时 (秋季学期)
现代铸造学 本科生 24/24学时 (秋季学期)

教育经历:

邱丰,吉林大学(双一流高校),材料科学与工程学院(材料科学与工程一级学科为双一流学科,材料学科全球ESI学科排名37,前千分之一,全国排名9),教授,博士生导师。1980年出生于辽宁省葫芦岛市。师从于吉林大学材料科学与工程学院姜启川教授,2009年获工学博士学位。从事于纳米介质、高性能结构材料微观组织和性能的协同调控;纳米调控金属熔化焊及塑性连接;纳米功能陶瓷及复合材料功能化应用等基础理论研究。作为负责人,主持国家级省部市各类科研及人才项目20余项(其中A类项目6项),其中主持国家自然科学基金3项,国家重大基础研究专项973课题子项1项,江苏省双创人才(企业创新类)1项,教育部博士点基金1项,吉林省科技发展计划项目3项,吉林省教育厅十三五科学技术研究项目1项,入选CSC“2015未来科学家计划(先进材料),入选2014吉林大学优秀青年教师培养计划(重点阶段)和2017年吉林大学优秀青年教师培养计划(精英阶段);作为主要参加人,参研国家自然基金重点及面上项目7项。累计可支配经费700余万元。获吉林省科学技术奖一等奖1项(第六获奖人)。发表检索SCI论文120余篇,其中第一作者和通讯作者发表SCI检索论文70篇,他引700余次,H影响因子≥18,授权及公开发明专利50余项。

邮箱:qiufeng@jlu.edu.cn; 电话:13604402407

工作经历: 1.2016/12-至今,吉林大学,材料科学与工程学院,教授,博士生导师
2.2015/11-2016/12,奥克兰大学(美国),工程与计算机学院 机械系,访问学者(国家公派)
3.2015/12-2016/11,吉林大学,材料科学与工程学院,副教授,博士生导师
4.2011/10-2015/11,吉林大学,材料科学与工程学院,副教授
5.2009/7-2011/9, 吉林大学,材料科学与工程学院,讲师
科研项目:
  1. 1.国家自然科学基金面上项目(A类), 批准号:51971101,纳米形核介质、组织构型和强韧化协同调控机制,经费:60万,2020.1-2023.12,在研,负责人。

  2. 2.国家自然科学基金面上项目(A, 批准号:51771081,纳米晶种细化铝合金α-Al枝晶的动力学规律与机制,经费:60万,2018.1-2021.12,在研,负责人

  3. 3.科技部重点研发(973计划)子项(A类),批准号:2012CB619602-1-5, 先进金属复合材料可控复合制备理论(复合组织和缺陷形成与演化规律),经费60万元,运   行期间2012.01-2016.12,已结题,负责人。

  4. 4.吉林省科技发展计划(重点技术攻关)项目(A类),项目号:20190302004GX,汽车和高速列车用高性能铝合金组织和性能一体化调控剂开发,经费:100万,2019.1-2021.12,在研,负责人。

  5. 5.国家自然科学基金青年基金(A类),批准号:51101071,非晶合金变质对铸造合金组织演变的影响规律及其作用机制,2012.01-2014.1225万元,已结题,负责    人。

  6. 6.江苏省镇江市人民政府金山人才计划(A类), 经费:100万,2018.1-2020.12,在研,负责人。

  7. 7.江苏省双创人才(企业创新类),经费:50万,2018 -2021,在研,负责人。

  8. 8.国家重点研发计划子课题,批准号:2017YFB0703101,复合体系相容性集成计算与设计准则,经费128万元,运行期间2017.06-2021.05,运行,第一参加人。

  9. 9.江苏省镇江市丹徒区人民政府长山计划人才项目, 经费:30万,2018.1-2020.12,在研,负责人。

  10. 10.横向项目: QT700-10级高韧性球墨铸铁材料的应用开发,合同编号:HT2017Z1529, 一汽铸锻有限公司, 经费 49.8万元,运行时间2018.1-2018.12, 已结题,负责人。

  11. 11.吉林大学优秀青年教师培养计划(精英培养阶段),吉林大学,经费 40万元,2018.1-2019.12, 在研,负责人。

  12. 12.2018年青岛市源头创新计划应用基础研究项目,航空航天用铝合金的纳米颗粒强化技术基础研究, 经费 10万元,2018.1-2019.12, 在研,负责人。

  13. 13.吉林省科技发展计划项目,项目号:20170101178JC,铝合金熔体内非晶态细化剂原位晶化形成纳米尺寸晶种的机制及其工程应用基础,经费 10万元,运行时间2017.1-2019.12, 在研,负责人。

  14. 14.吉林省教育厅十三五科学技术研究,批准号:2015-479, 内生纳米TiC颗粒增强铝基复合材料组织演变规律及强化机制,2016.1.1-2017.12.31,已结题,负责人。

  15. 15.吉林大学优秀青年教师培养计划,吉林大学,经费 18万元,2014.7-2017.7 已结题,负责人。

  16. 16.国家留学基金委公派留学基金,批准号:201506175140未来科学家(高级研究者和访问学者)项目,2015.12-2016.11,全额资助,先进材料领域。

  17. 17.吉林省自然科学基金,批准号:20130102022JC,一种新型变质剂-非晶合金在铝合金中的变质,2013.01-2015.128万元,已结题,负责人。

  18. 18.中科院稀土资源利用国家重点实验室开放课题基金,批准号:RERU2014009非晶合金中稀土元素在铝合金变质中的作用及机制, 2014.01-2015.125万元,已结题,负责人。

  19. 19.教育部高等学校博士学科点专项科研基金(新教师类),批准号:20100061120063,纳米陶瓷增强金属间化合物基复合材料的强韧化机理,2011.01-2013.12,已结题,负责人。

  20. 20.横向项目:一汽集团铸造公司,合同编号:HT2014Z070704,铸态高强韧性铸铁材料(QT800-5)开发,2014.05-2015.0335万元,已结题,负责人。

学术论文:

发表论文情况(按时间倒排序, *通讯作者):截至目前已发表SCI检索学术论文120多篇,其中以第一作者或通讯作者发表SCI检索论文70余篇。

  1. 1. Haotian Tong, Feng Qiu*(邱丰), Rui Zuo, Ping Shen, Xiaoshuang Cong, Jingshen Liu, Hongyu Yang, QichuanJiang. The effect and mechanism of alloying elements on Al/SiC interfacial reaction in Al melt. Applied Surface Science, 501, 144265.

  2. 2. Lin Zhu, Feng Qiu*, Dong Qiu, Tao-Tao Duan, Fang Chang, Tao-Tao Li, Shi-Li Shu, Hong-YuYang, Yang He, Qi-Chuan Jiang. Efficient microstructure refinement of Al-Si-Mg alloy manipulated by nanocrystals formed by in-situ crystallization in melt. Materials Science and Engineering A, 2019, 751, 90-98.

  3. 3. Yu-Yang Gao, Feng Qiu*, Qing-Long Zhao, Qi-Chuan Jiang. A new approach for improving the elevated-temperature strength and ductility of Al–Cu–Mg–Si alloys with minor amounts of dual-phased submicron/nanosized TiB2–TiC particles. Materials Science & Engineering A, 2019, 764 ,138266.

  4. 4. Qiang Li, Feng Qiu*, Yu-Yang Gao, BaiXin Dong, Shili Shu, Mingming Lv, Hong-YuYang,Qing–Long Zhao,Qi-Chuan Jiang. Microstructure refinement and strengthening mechanisms of bimodal-sized and dual-phased (TiCn-Al3Tim)/Al hybrid composites assisted ultrasonic vibration. Journal of Alloys and Compounds, 2019,788, 1309-1321.

  5. 5. Bai-Xin Dong, Hong-Yu Yang, Feng Qiu*, Qiang Li, Shi-Li Shu, Bing-Qi Zhang, Qi-Chuan Jiang. Design of TiCx nanoparticles and their morphology manipulating mechanisms by stoichiometric ratios: Experiment and first-principle calculation. Materials and Design, 2019, 181, 107951.

  6. 6. Lin Zhu, Tian-Shu Liu, Tao-Tao Duan, Tao-Tao Li, Feng Qiu*(邱丰), Hong-Yu Yang, Zhi-Hao Bai, Ying-Ying Liu, Qi-Chuan Jiang. Design of a new Al-Cu alloy manipulated by in-situ nanocrystals with superior high temperature tensile properties and its constitutive equation. Materials and Design, 2019, 181, 107945.

  7. 7. Jian-Feng Xie, Tian-Shu Liu, Qiang Li, Qing-Yuan Li, Zi-Han Xu, Feng Qiu*, Jian Tang, Hong-Yu Yang, Qi-Chuan Jiang. Nanoparticulate dispersion, microstructure refinement and strengthening mechanisms in Ni-coated SiCp/Al-Cu nanocomposites. Materials Science & Engineering A, 2019, 762 ,138092.

  8. 8. Bai-Xin Dong, Feng Qiu*, Qiang Li, Shi-Li Shu, Hong-Yu Yang,Qi-Chuan Jiang. The Synthesis, Structure, Morphology haracterizations and Evolution Mechanisms f Nanosized Titanium Carbides and Their urther Applications. Nanomaterials 2019, 9, 1152.

  9. 9. Fang Chang, Feng Qiu*, Chuanlu Li, Yawei Wang, Qichuan Jiang. Effects of Cr and Mo elements on the microstructures and compressive properties of the in situ (TiCxNy–TiB2)/Ni cermets. Progress in Natural Science: Materials International, 2019, 29, 20-27.

  10. 10. Yu-Yang Gao, Feng Qiu*, Run Geng, Jian-Ge Chu, Qing-Long Zhao,Qi-Chuan Jiang. Effects of nanosized TiCp dispersion on the high-temperature tensile strength and ductility of in situ TiCp/Al-Cu-Mg-Si nanocomposites. Journal of Alloys and Compounds, 2019,735, 310-317.

  11. 11. Feng QIU, Haotian TONG, Ping SHEN, Xiaoshuang CONG, Yi WANG, Qichuan JIANG. Overview: SiC/Al Interface Reaction and Interface Structure Evolution Mechanism. Acta Metallurgica Sinica, 2019, 55(1), 87-100.

  12. 12. Yuyang Gang, Feng Qiu*, Shu-Li Shu, Lei Wang, Fang Chang, Wei Hu, Xue Han, Qiang Li, Qi-Chuan Jiang. Mechanical properties and abrasive wear behaviors of in-situ nano-TiCx/Al-Zn-Mg-Cu composites fabricated by combustion synthesis and hot press consolidation. Archives of Civil and Mechanical Engineering, 2018,18, 179-187.

  13. 13. Qiang Li, Feng Qiu*, Bai–Xin Dong, Run Geng, Ming–ming Lv, Qing–Long Zhao,Qi-Chuan Jiang. Fabrication, microstructure refinement and strengthening mechanisms of nanosized SiCP/Al composites assisted ultrasonic vibration. Materials Science and Engineering A, 2018,735, 310-317.

  14. 14. Run Geng, Feng Qiu*, Qichuan Jiang.Reinforcement in Al Matrix Composites: A Review of Strengthening Behavior of Nano-sized Particles. Advanced Engineering Materials,2018,DOI: 10.1002/adem.201701089.

  15. 15. Yu-Yang Gao, Bai-Xin Dong, Feng Qiu*, Run Geng, Lei Wang, Qing-Long Zhao, Qi-Chuan Jiang. The superior elevated-temperature mechanical properties of Al-Cu-Mg-Si composites reinforced with in situ hybrid-sized TiCx-TiB2 particles. Materials Science and Engineering A, 2018,728, 157-164.

  16. 16. Feng Qiu, Hao-Tian Tong , Yu-Yang Gao, Qian Zou, Bai-Xin Dong, Qiang Li, Jian-Ge Chu, Fang Chang, Shi-Li Shu and Qi-Chuan Jiang. Microstructures and Compressive Properties of Al Matrix Composites Reinforced with Bimodal Hybrid In-Situ Nano-/Micro-Sized TiC Particles. Materials 2018, 11, 1284.

  17. 17. Yu-Yang Gao, Feng Qiu*, Tian-Shu Liu, Jian-Ge Chu, Qing-Long Zhao,Qi-Chuan Jiang. Effects of Carbon Source on TiC Particles’ Distribution, Tensile, and Abrasive Wear Properties of In Situ TiC/Al-Cu Nanocomposites Prepared in the Al-Ti-C System. Nanomaterials 2018, 8, 610.

  18. 18. Chuan-Lu Li, Feng Qiu*, Fang Chang, Xu-Min Zhao , Run Geng, Hong-Yu Yang, Qing-Long Zhao, Qi-Chuan Jiang. Simultaneously Enhanced Strength, Toughness and Ductility of Cast 40Cr Steels Strengthened by Trace Biphase TiCx-TiB2 Nanoparticles. Metals 2018, 8, 707.

  19. 19. Lei Wang, Feng Qiu*, Jingyuan Liu, Delong Yang, Fang Chang, Qichuan Jiang. Effects of TiB2/TiCx ratios on compression properties and abrasive wear resistance of in situ 50 vol.% (TiB2-TiCx)/Al-Cu composites. Powder Metallurgy. 2018 61 (1) ,81–87.

  20. 20. Lei Wang, Feng Qiu*, Qian Zou, De-Long Yang, Jian Tang, Yu-Yang Gao, Qiang Li, Xue Han, Shi-Li Shu, Fang Chang, Qichuan Jiang. Microstructures and tensile properties of nano-sized SiCp/Al-Cu composites fabricated by semisolid stirring assisted with hot extrusion. Materials Characterization, 2017, 131,195-200.

  21. 21. Delong Yang, Feng Qiu*, Qinglong Zhao, Lei Wang, Qichuan Jiang. The abrasive wear behavior of Al2014 composites reinforced with Ti5Si3-coated SiCp. Tribology International, 2017, 112, 33-41.

  22. 22. Lei Wang, Feng Qiu*, Qinglong Zhao, Min Zha, Qichuan Jiang. Superior high creep resistance of in situ nano-sized TiCx/Al-Cu-Mg composite. Scientific Reports, 2017, 7, 4540.

  23. 23. De-Long Yang, Feng Qiu*, Qing-Long Zhao, Qi-Chuan Jiang. The microstructure and tensile property for Al2014 composites reinforced with Ti5Si3-coated SiCP. Materials Science and Engineering A, 2017,688, 459-463.

  24. 24. Feng Qiu, Xiang Gao, Jian Tang, Yu-Yang Gao, Shi-Li Shu, Xue Han, Qiang Li, Qi-Chuan Jiang. Microstructures and Tensile Properties of Al–Cu Matrix Composites Reinforced with Nano-Sized SiCp Fabricated by Semisolid Stirring Process. Metals, 2017, 7(2), 49.

  25. 25. Feng Qiu, Lin Zhu, Qian Zou, Lei Wang, Xue Han, Qiang Li, Qichuan Jiang. Morphology Evolution on the Fracture Surface and Fracture Mechanisms of Multiphase Nanostructured ZrCu-Base Alloys. Materials 2017, 10, 284.

  26. 26. Lei Wang, Feng Qiu*, Qian Zou, De-Long Yang, Jian Tang, Yu-Yang Gao, Qiang Li, Xue Han, Shi-Li Shu, Fang Chang, Qichuan Jiang. Microstructures and tensile properties of nano-sized SiCp/Al-Cu composites fabricated by semisolid stirring assisted with hot extrusion. Materials Characterization, 2017, 131,195-200.

  27. 27. Delong Yang, Feng Qiu*, Qinglong Zhao, Qichuan Jiang. Excellent compressive strength and ductility of Ti5Si3–coated SiCP/Al2014 composites. Journal of Alloys and Compounds, 2017, 698, 1086-1093.

  28. 28. Lei Wang, Feng Qiu*, Qinglong Zhao, Huiyuan Wang, Delong Yang, Qichuan Jiang. Simultaneously increasing the elevated-temperature tensile strength and plasticity of in situ nano-sized TiCx/Al-Cu-Mg composites. Materials Characterization, 2017, 125, 7-12.

  29. 29. L. Wang, F. Qiu*, S.-L. Shu, Q.-L. Zhao, Q.-C. Jiang. Effects of different carbon sources on the compressive properties of in situ high-volume-fraction TiC x /2009Al composites. Powder Metallurgy, 2016, 59(5), 370-375.

  30. 30. Shili Shu, Hongyu Yang, Cunzhu Tong, Feng Qiu. Fabrication of TiC x -TiB 2 /Al Composites for Application as a Heat Sink. Materials, 2016, 9, 642.

  31. 31. F. Qiu, Y.-Y. Gao, J.Y. Liu, S. L. Shu, Q. Zou, T. Z. Zhang, Q.C. Jiang. Effect of C/Ti ratio on the compressive properties and wear properties of the 50 vol.% submicron-sized TiCx/2014Al composites fabricated by combustion synthesis and hot press consolidation. Powder Metallurgy, 2016, 59 (4), 256 - 261.

  32. 32. De-Long Yang, Feng Qiu*, Zong-Kun Lei, Qing-Long Zhao, Qi-Chuan Jiang. The interfacial structure and mechanical properties of Ti5Si3-coated SiCP/Al2014 composites fabricated by powder metallurgy with hot pressing. Materials Science and Engineering A, 2016,661,217-221.

  33. 33. Feng Qiu, Lianyi Shan, Jianmei Bao, Jiange Chu, Yang He, Qichuan Jiang. Deformation-induced martensitic transformation and strong work-hardening behaviors in the Nanostructured Zr-Cu-Al alloys. Materials. Science and Technology, 2016; 32(1), 57-62.

  34. 34. S.L. Shu, C.Z. Tong , F. Qiu*, Q. Zou and Q.C. Jiang. Effects of ternary elements on the ductility of TiAl. Canadian Metallurgical Quarterly, 2016, 55(02), 156 - 160.

  35. 35. Dong–Shuai Zhou, Feng Qiu*, Qi–Chuan Jiang. Superior tensile properties of in situ nano-sized TiCp/Al-Cu composites fabricated by reaction in melt method. Materials Science and Engineering A, 2016, 658:409-414.

  36. 36. Zhihao Bai, Feng Qiu*, Yang He, Hailong Zhao, Qichuan Jiang. Tensile properties and work-hardening behaviors of Al-Cu alloys modified by Al84Ni10La6 metallic glass. Journal: International Journal of Cast Metals Research, 2015, 28(06) 352-355.

  37. 37. Feng Qiu, Yang He, Lin Zhu, Shili Shu, Wei Hu, Chenghua Zhan, Qichuan Jiang. Microstructure and compression properties of in-situ dual phase nano-sized (TiB2-Ti5Si3)/TiAl matrix composites fabricated by combustion synthesis and hot press consolidation. Powder Metallurgy, 2015, 58(3), 235–240.

  38. 38. Feng Qiu, Jiange Chu, Wei Hu, Jianbang Lu, Xiaodong Li, Yue Han, Qichuan Jiang. Study of effect of Zr addition on the microstructures and mechanical properties of (TiCx-TiB2)/Cu composites by combustion synthesis and hot press consolidation in the Cu-Ti-B4C-Zr system. Materials Research Bulletin, 2015, 70, 167-172.

  39. 39. Zhihao Bai, Feng Qiu*, Yingying Liu, Qichuan Jiang. Superior strength and ductility of the Al–Cu alloys inoculated by Zr-based metallic glass at elevated temperatures. Materials Science and Engineering A, 2015, 645, 357-360.

  40. 40. Feng Qiu, Rui Zuo, ShiLi Shu, YaWei Wang, QiChuan Jiang. Effect of Al addition on the microstructures and compression properties of (TiCxNy-TiB2)/Ni composites fabricated by combustion synthesis and hot press. Powder Technology, 2015, 286, 716-721.

  41. 41. Delong Yang, Feng Qiu*, Weixing Zhao, Ping Shen, Huiyuan Wang, Qichuan Jiang. Effects of Ti-coating layer on the distribution of SiCP in the SiCP/2014Al composites. Materials and Design, 2015, 87, 1100-1106.

  42. 42. Zhihao Bai, Feng Qiu*, Qichuan Jiang. Grain refinement behavior of Al-Cu alloys inoculated by various metallic glasses. Materials Chemistry and Physics, 2015, 168,1-5.

  43. 43. Shili Shu, Cunzhu Tong, Feng Qiu* and Qichuan Jiang. Effect of Ceramic Content on the Compression Properties of TiB2-Ti2AlC/TiAl Composites. Metals 2015, 5, 2200-2209.

  44. 44. Lei Wang, Feng Qiu*, Licheng Ouyang, Huiyuan Wang, Min Zha, Shili Shu, Qinglong Zhao and Qichuan Jiang. A Novel Approach of Using Ground CNTs as the Carbon Source to Fabricate Uniformly Distributed Nano-Sized TiCx/2009Al Composites. Materials 2015, 8, 8839–8849.

  45. 45. Shili Shu, Cunzhu Tong, Feng Qiu*, and Qichuan Jiang. Effect of Mn, Fe and Co on the compression strength and ductility of in situ nano sized TiB2/TiAl composites. SpringerPlus 2015, 4:784.

  46. 46. Dongshuai Zhou, Feng Qiu*, Qichuan Jiang. The nano-sized TiC particle reinforced Al-Cu composite with superior tensile ductility. Materials Science and Engineering A, 2015, 622: 189–193.

  47. 47. Longjiang Zhang, Feng Qiu*, Jinguo Wang, Qichuan Jiang. High strength and good ductility at elevated temperature of nano-SiCp/Al2014 composites fabricated by semi-solid stir casting combined with hot extrusion. Materials Science and Engineering A, 2015, 626, 338–341.

  48. 48. Zhihao Bai, Feng Qiu*, Jiaxing Xue, Bingqi Zhang, Qichuan Jiang. Simultaneously increasing strength and ductility of the Al–Cu alloys inoculated by Zr-based metallic glass. Materials Characterization,2015, 100: 36–40.

  49. 49. Zhihao Bai, Feng Qiu*, Jiaxuan Chi, Tao Zhang, Qichuan Jiang. Microstructure evolution and mechanical properties of Al–Cu alloys inoculated by FeBSi metallic glass. Materials and Design,2015, 67, 130–135.

  50. 50. Zhihao Bai, FengQiu*, Yingying Liu, Wei Zhou, Qichuan Jiang. Age Hardening and Mechanical Properties of Cast Al-Cu Alloy Modified by La and Pr. Advanced Engineering Materials, 2015, 17(2), 143–147.

  51. 51. Zhihao Bai, FengQiu*, Tao Zhang, Qichuan Jiang. A New Approach to Refine Grains in Al Alloys. Advanced Engineering Materials, 2015, 17(6), 796–801.

  52. 52. Longjiang Zhang, Feng Qiu*, Jinguo Wang, Huiyuan Wang, Qichuan Jiang. Microstructures and mechanical properties of the Al2014 composites reinforced with bimodal sized SiC particles. Materials Science and Engineering A, 2015, 637, 70-74.

  53. 53. Zhihao Bai, Yumei Xia, Feng Qiu*, Yingying Liu, Wei Hu, Qichuan Jiang. Effects of RExOy addition on corrosion behavior of the Al–Cu alloys in 3.5 wt.% NaCl solution and pH = 4 acid solution. Applied Surface Science, 2014, 307, 153–157.

  54. 54. Longjiang Zhang, Delong Yang, Feng Qiu*, Jinguo Wang, Qichuan Jiang. Effects of reinforcement surface modification on the microstructures and tensile properties of SiCp/Al2014 composites. Materials Science & Engineering A,2015, 624, 102–109.

  55. 55. Lei Wang, Feng Qiu*, Jingyuan Liu, Huiyuan Wang, Jinguo Wang, Lin Zhu, Qichuan Jiang. Microstructure and tensile properties of in situ synthesized nano-sized TiCx/2009Al composites. Materials and Design, 2015, Materials and Design, 2015, 79, 68–72.

  56. 56. Feng Qiu, Yue Han, Ai Cheng, Jianbang Lu, Qichuan Jiang. Effect of Cr Content on the Compression Properties and Abrasive Wear Behavior of the High-Volume Fraction (TiC–TiB2)/Cu Composites. Acta Metallurgica Sinica (English Letters), 2014,27(5), 951–956.

  57. 57. Shili Shu, Feng Qiu*, Cunzhu Tong, Xiaonan Shan, Qichuan Jiang. Effects of Fe, Co and Ni elements on the ductility of TiAl alloy. Journal of Alloys and Compounds, 2014, 617: 302–305.

  58. 58. Feng Qiu, Yingying Liu, Ruifen Guo, Zhihao Bai, Qichuan Jiang*. Effect of oxygen content on the microstructure, compression properties and work-hardening behaviors of ZrCuAlNi glassy composites. Materials Science and Engineering A, 2013, 580: 13–20.

  59. 59. Feng Qiu, Ping Shen, Tao Liu, Qichuan Jiang*. Enhanced ductility in a Zr65Cu15Al10Ni10 bulk metallic glass by nanocrystallization during compression. Materials and Design, 2012, 36: 168–171.

  60. 60. Feng Qiu, Ping Shen, Chang Liu, Qichuan Jiang. Effects of Ni addition on the microstructure and compressive deformation behavior in Zr-Cu-Ni martensitic alloys. Materials and Design, 2012, 34: 143–147.

  61. 61. Shili Shu, Feng Qiu*, Shenbao Jin, Jianbang Lu, Qichuan Jiang. Compression properties and work-hardening behavior of Ti2AlC/TiAl composites fabricated by combustion synthesis and hot press consolidation in the Ti-Al-Nb-C system. Materials and Design, 2011, 32: 5061–5065.

  62. 62. Hailong Zhao, Feng Qiu*, Shenbao Jin, Qichuan Jiang. High work-hardening effect of the pure NiAl intermetallic compound fabricated by the combustion synthesis and hot pressing technique. Materials Letters, 2011, 65: 2604–2606.

  63. 63. Feng Qiu, Ping Shen, Tao Liu, Qiaoli Lin, Qichuan Jiang*. Electronic structure and phase stability during martensitic transformation in Al-doped ZrCu intermetallics. Journal of Alloys and Compounds, 2010, 491: 354-358.

  64. 64. Feng Qiu, HY Wang, T Liu, Qichuan Jiang*. Influence of Al content on the microstructure and mechanical property of the (Zr2Cu)100-xAlx alloys. Journal of Alloys and Compounds, 2009, 468: 195-199.

  65. 65. Feng Qiu, P Shen, T Liu, D Zhang, Qichuan Jiang*. The effect of the cooling rate on the solidification microstructure and martensitic transformation in ZrCuAlNiO alloy. Journal of Alloys and Compounds, 2009, 477: 840-845.

  66. 66. F Qiu, P Shen, ZH Jiang, T Liu, Qichuan Jiang*. Strong work-hardening effect in a multiphase ZrCuAlNiO alloy. Applied Physics Letters, 2008, 92: 151912.

  67. 67. F Qiu, T Liu, ZH Jiang, P Shen, Qichuan Jiang*. Formation of a multiphase gradient structure in a Zr–Cu–Ni–Al–O alloy. Advanced Engineering Materials, 2008, 10 (4): 384-388.

  68. 68. F Qiu, P Shen, T Liu, Qichuan Jiang*. Effect of tempering on microstructure and mechanical properties in a multiphase ZrCuAlNiO alloy. ISIJ International, 2008, 48(7): 984-987.

 

获奖情况: 金属材料中原位内生强化相的形成及调控机制,吉林省科学技术奖励委员会,吉林省科学技术奖,一等,2013。(姜启川,王慧远,沈平,赵宇光,王金国,邱丰,许长林,王彦,邹兵林,梁云虹)
社会兼职:

中国材料研究学会凝固科学与技术分会理事;

中国机械工程学会铸造分会复合材料技术委员会委员;

 

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