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周凯

姓名 周凯
性别
学校 西北工业大学
部门 党政办公室/机关党委
学位 工学博士学位
学历 博士研究生毕业
职称 副高
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个人经历 Personal experience 工作经历 教育经历 2016.05——至      今,西北工业大学理学院,副教授 2012.05——2016.04,西北工业大学理学院,讲    师 2010.04——2012.04,西北工业大学理学院,助    教 2009.09——2014.04,西北工业大学理学院,材料物理与化学专业博士 2007.09——2010.04,西北工业大学理学院,材料物理与化学专业硕士 2003.09——2007.07,西北工业大学理学院,应用物理学专业学士

教育教学

教育教学 Education and teaching 教育教学 招生信息 招收材料物理与化学、材料工程专业研究生,欢迎报考!

荣誉获奖

科学研究 Scientific Research 在魏炳波院士指导下开展研究工作,是空间材料科学与技术重点实验室主要科研人员之一,主要从事金属材料的热物理性质与深过冷快速凝固研究。目前,主持国家自然科学基金2项、航空科学基金、陕西省重点研发计划等项目4项,作为主要参加人参与国家重大科研仪器设备研制专项、国家自然科学基金重点项目等多项。担任中国材料研究学会青年工作委员会理事。获陕西省科学技术奖二等奖1项(第二完成人);陕西高等学校科学技术一等奖1项(第二完成人)。

科学研究

学术成果 Academic Achievements 目前,在Chemical Physics Letters、Applied Physics Letters、Scientific Reports等国际知名学报发表学术论文20余篇,其中第一作者 8 篇,SCI收录20篇,EI收录10余篇。同时,多次参加国内外学术会议并作报告。 [1] K. Zhou, and B. Wei, “Determination of the thermophysical properties of liquid and solid Ti–6Al–4V alloy”, Applied Physics A, 122(3), 248, 2016. [2] K. Zhou, H. P. Wang, J. Chang, and B. Wei, “Experimental study of surface tension, specific heat and thermal diffusivity of liquid and solid titanium”, Chemical Physics Letters, 639, 105–108, 2015. [3] K. Zhou, H. P. Wang, and B. Wei, “Thermophysical properties of substantially undercooled liquid Ti–Al–Nb ternary alloy measured by electromagnetic levitation”, Philosophical Magazine Letters, 93(3), 138–141, 2013. [4] K. Zhou, H. P. Wang, and B. Wei, “Determining thermophysical properties of undercooled liquid Ti–Al alloy by electromagnetic levitation”, Chemical Physics Letters, 521, 52–54, 2012. [5] K. Zhou, H. P. Wang, J. Chang, and B. Wei, “Rapid solidification of Ti–Al alloys under electromagnetic levitation condition”, Proceedings of the 12th World Conference on Titanium, 1460–1462, 2012. [6] K. Zhou, H. P. Wang, J. Chang, and B. Wei, “Surface tension measurement of metastable liquid Ti–Al–Nb alloys”, Applied Physics A, 105(1), 211–214, 2011. [7] K. Zhou, H. P. Wang, J. Chang, and B. Wei, “Specific heat measurement of stable and metastable liquid Ti–Al alloys”, Applied Physics A, 103(1), 135–137, 2011. [8] K. Zhou, H. P. Wang, J. Chang, and B. Wei, “Surface tension of substantially undercooled liquid Ti–Al alloy”, Philosophical Magazine Letters, 90(6), 455–462, 2010. [9] P. Lü, K. Zhou, X. Cai, and H. P. Wang, “Thermophysical properties of undercooled liquid ni-zr alloys: melting temperature, density, excess volume and thermal expansion”. Computational Materials Science(2017):135, 22-28. [10] P. Lü, K. Zhou, and H. P. Wang, “Evidence for the transition from primary to peritectic phase growth during solidification of undercooled Ni-Zr alloy levitated by electromagnetic field”, Scientific Reports(2016): 6, 39042. [11] W. Zhai, K. Zhou, B.J. Wang, and B. Wei, “Determination of the enthalpy of fusion and thermal diffusivity for ternary Cu60-xSnxSb40 alloys”, The Journal of Chemical Thermodynamics, 95, 159–163, 2016. [12] W. Zhai, K. Zhou, B.J. Wang, and B. Wei,“Thermodynamic properties and primary phase structures of ternary Cu90-xSnxSb10 alloys investigated by differential scanning calorimetry and laser flash method”, Materials Letters, 164, 286–290, 2016. [13]H.P. Wang, P. Lü, K. Zhou, and B. Wei, “Thermal expansion of Ni3Al intermetallic compound: experiment and simulation”, Chinese Physics Letters, 33(4), 046502, 2016. [14] W. Zhai, L. Hu, K. Zhou, and B. Wei, “Thermodynamic properties and phase transitions of ternary Co-Cu-Si alloys with equiatomic Co/Cu ratio”, Journal of Physics D: Applied Physics, 49(16), 165306, 2016. [15] J.M. Liu, W. Zhai, K. Zhou, D.L. Geng, and B. Wei, “Thermophysical properties and liquid-solid transition mechanisms of ternary (Co0.5Cu0.5)100-xSnx alloys”, Acta Physics Sinica, 65(22), 228101, 2016. [16] X. B. Ma, H. P. Wang, K. Zhou, J. Chang, and Z. Y. Hong, “Specific heat determination and simulation of metastable ternary Ni80Cu10Si10 alloy melt”, Applied Physics Letters, 103, 104101, 2013. [17] J. Chang, H. P. Wang, K. Zhou, and B. Wei, “Thermophysical properties and rapid solidification of an undercooled liquid hexabasic Ni–based alloy”, Philosophical Magazine Letters, 93, 254–263, 2013. [18] J. Chang, H. P. Wang, K. Zhou, and B. Wei, “Surface tension measurement of undercooled liquid Ni–based multicomponent alloys”, Philosophical Magazine Letters, 92(9), 428–435, 2012. [19] J. Chang, H. P. Wang, K. Zhou, and B. Wei, “Rapid dendritic growth and solute trapping within undercooled ternary Ni–5%Cu–5%Mo alloy”, Applied Physics A, 109, 139–143, 2012. [20] R. Ying, N. Yan, H. Z. Zhu, K. Zhou, and B. Wei, "Thermal performance determination of binary Fe-Al alloys at elevated temperatures." Journal of Alloys & Compounds (2017): 701, 676-681. [21] R. Ying, L. Li, Q. Gu, K. Zhou, N. Yan, and B. Wei, “Thermal expansion and thermal diffusivity properties of Co-Si solid solutions and intermetallic compounds”,  The Journal of Chemical Thermodynamics, 102, 1–8, 2016. 会议报告: (1) K. Zhou, and B. Wei, Thermophysical Properties and Solidification Mechanisms of Ternary Ti-Al-Nb Alloys, 11th Asian Microgravity Symposium (AMS2016), October 25–29, 2016, Sapporo, Japan. (2) K. Zhou, P. Lu and B. Wei, “Thermophysical Properties and Eutectic Solidification of Undercooled Binary Ti –Ge Alloys”, the 14th International Union of Materials Research Societies - International Conference on Advanced Materials (IUMRS-ICAM 2015), October 25–29, 2015, Jeju, Korea. (3) 周  凯,王海鹏,魏炳波,“深过冷液态Ti-6Al-4V合金的快速凝固与力学性能”,中国材料大会2014,7.4–7,2014,成都,中国. (4) K. Zhou, H.P. Wang, D.L. Geng and B. Wei, “Microstructural Evolution of Substantially Undercooled Ternary Ti-Al-Nb Alloy”, the 14th International IUPAC Conference on High Temperature Materials Chemistry (HTMC-XIV), Sept. 9–13, 2012, Beijing, China.

学术成果

团队信息 Team Information 空间材料科学与技术团队,材料物理与化学全国重点学科,教育部重点实验室,陕西省重点实验室

综合介绍

周凯