周文龙
个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:材料科学与工程学院
学科:材料加工工程
办公地点:铸造中心212室
联系方式:wlzhou@dlut.edu.cn; 0411-84709967
电子邮箱:wlzhou@dlut.edu.cn
扫描关注
- [41]Wang, Qi, 陈国清, Tang, Huaping, 付雪松, 周文龙.Enhanced Hot Workability of Ti-46Al-4Nb-0.1B Alloy by Introducing Adjustable beta Phase via Ele...[J],ADVANCED ENGINEERING MATERIALS,2022,23(1)
- [42]Li, Kang, 付雪松, Zhiqiang, 周文龙, 陈国清.Fatigue Fracture Mechanism of Ti-6Al-4V Alloy Strengthened by Wet Peening Treatment[J],Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering,2022,46(10):3068-3072
- [43]Lu, B. L., 周文龙, 陈国清.First-principles study on influence of alloying elements on electrochemical stability of cobalt...[J],MATERIALS AND CORROSION WERKSTOFFE UND KORROSION,2022,63(8):735-738
- [44]Li, Kang, 付雪松, Rui-dong, Gai, Peng-tao, Zhi-qiang, 周文龙, 陈国清.Fretting fatigue characteristic of Ti-6Al-4V strengthened by wet peening[J],INTERNATIONAL JOURNAL OF FATIGUE,2022,85:65-69
- [45]Niu, Zhiqiang, 周文龙, Wang, Chenglin, Cao, Ziwen, Yang, Qi, 付雪松.Fretting wear mechanism of plasma-sprayed CuNiIn coating on Ti-6Al-4V substrate under plane/plane...[J],SURFACE & COATINGS TECHNOLOGY,2022,408
- [46]陈国清, Wei Yanhui, Li Shan, 周文龙.Friction and Wear Mechanism of Unlubricated 304L Austenitic Stainless Steel at Room Temperature[J],Journal of Wuhan University of Technology,2022,27(2):222-226
- [47]Wang, Chenglin, 史淑艳, Deng, Ying, Gai, Pengtao, 陈国清, 付雪松, 周文龙.Friction control by tailoring deformation mechanism of interfacial grains in metals[J],MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2022,828
- [48]Ren Xiao, 陈国清, 周文龙, 吴成伟, 张俊善.Formation and Growth Kinetics of Intermediate Phases in Ni-Al Diffusion Couples[J],Journal of Wuhan University of Technology,2022,24(5):787-790
- [49]Lu, Bai Lin, 陈国清, Qu, Shen, Su, Hui, 周文龙.First-principle calculation of yield stress anomaly of Ni3Al-based alloys[J],MATERIALS SCIENCE AND ENGINEERING A STRUCTURAL MATERIALS PROPERTIES MICROST,2022,565:317-320
- [50]张久文, Starink, Marco J., Gao, Nong, 周文龙.Influence of Strain Reversals during High Pressure Torsion Process on Strengthening in Al-Cu-Mg...[A],5th International Conference on Nanomaterials by Severe Plastic Deformation,2022,667-669:809-+
- [51]马国军, 吴成伟, 周文龙, 郭杏林, 任明法, Guo, JT.Initial study of strengthening of NiAl-Cr(Mo)-Hf alloys by strong magnetic field[J],JOURNAL OF MATERIALS RESEARCH,2022,20(2):295-298
- [52]Song-Chao, Xu, Peng-Tao, Gai, 付雪松, 陈国清, 周文龙.Influences of dry and wet shot peening process on strengthening layer of TC17 titanium alloy[J],Surface Technology,2022,50(9):91-98
- [53]Fu, Lian-sheng, 陈国清, 付雪松, 周文龙.Insights into the ternary eutectic microstructure formed in intercolony regions in Al2O3-ZrO2(Y...[J],JOURNAL OF THE AMERICAN CERAMIC SOCIETY,2022,102(1):498-507
- [54]付雪松, Fu, Lian-sheng, 陈国清, Han, Wen-Bo, 周文龙.High temperature deformation of non-directionally solidified Al2O3/YAG/ZrO2 eutectic bulk ceram...[J],CERAMICS INTERNATIONAL,2022,43(2):1781-1787
- [55]周文龙, Guo, JT, Chen, RS, 周继扬.Investigation of superplasticity in a Ni50Al20Fe30 intermetallic compound[J],MATERIALS LETTERS,2022,51(4):342-346
- [56]孙中刚, 陈国清, Wang, Yaoqi, 周文龙, Hou, Hongliang.Investigations on cold deformation mechanisms of the hydrogenated Ti-6Al-4V alloys[J],MATERIALS SCIENCE AND ENGINEERING A STRUCTURAL MATERIALS PROPERTIES MICROST,2022,527(4-5):1003-1007
- [57]陈国清, 季守华, 周文龙, 吴成伟, Guo, J. T., 黄智慧.Investigation of compression deformation behavior and microstructure evolution of NiAl-Cr(Mo)-H...[A],9th International Conference on Superplasticity in Advanced Materials,2022,551-552:457-+
- [58]Wu, Fan, 周文龙, Zhao, Bing, Hou, Hong-Liang.Interface microstructure and bond strength of 1420/7B04 composite sheets prepared by diffusion ...[J],Rare Metals,2022,37(7):613-620
- [59]祖宇飞, 陈国清, 付雪松, 周文龙.Liquid Phase Assisted Superplastic Deformation of TiO2-Doped ZTA Ceramics[J],Materials,2022,12(13)
- [60]周文龙, Guo, Jianting, Chen, Rongshi, 周继扬.Investigation on superplasticity of a NiAl-Fe in-termetallic alloy[J],Jinshu Xuebao/Acta Metallurgica Sinica,2022,35(9):995-998