徐学锋

2024-09-12



姓名:徐学锋

职称:教授

学科:机械工程

电话:+86-10-62338153

E-mailxuxuefeng@bjfu.edu.cn

研究方向:

1. 先进制造

2. 摩擦起电与摩擦发光

3. 水下减阻

导师类别:博士生导师、硕士生导师

招生方向:

机械工程博士

机械工程学硕

机械专硕

欢迎具有机械工程、车辆工程、自动化、先进制造等相关专业的考生报考

主讲课程:

理论力学

教育经历:

2002.9-2008.1 清华大学精仪系,机械工程(工学博士)

1994.9-1997.3 天津大学,机械工程(工学硕士)

1990.9-1994.7 天津大学,机械工程、电子工程(工学双学士)

工作经历:

2017.1-至今 北京林业大学工学院,教授

2012.1-2017.1 北京林业大学工学院,副教授

2010.5-2012.1 北京林业大学工学院,讲师

2008.1-2010.5 清华大学精仪系,博士后

承担课题(可选):

1、摩擦过程电荷转移动力学行为及摩擦起电-摩擦放电耦合机制研究,国家自然科学基金(52375166),2024.01 - 2027.1250万元(主持人);

2、高分辨原位实时摩擦能量耗散测量系统,国家重大科研仪器设备研制项目子课题,2016.01 - 2020.12200万元(主持人)。

3、液滴蒸发过程及其对纳米颗粒自组装构型的影响机制研究,国家自然科学基金(51575054),2016.01 - 2019.1275万元(主持人);

4、射流抛光中纳米颗粒碰撞的材料去除机理研究,国家自然科学基金(51275050),2013.01-2016.1280万元(主持人);

5、蒸发液滴中Marangoni效应及其对纳米颗粒自组装构型的影响机制,教育部新世纪优秀人才支持计划(NCET-12-0786),2013.01 - 2015.1250万元(主持人);

6、水下超滑减阻数值模拟与实验验证,清华大学技术开发,2022.11 - 2023.1050万元(参与人);

7、水下航行器表面气层形成及其减阻性能数值仿真,清华大学技术开发,2023.06 - 2024.0550万元(主持人)。

获奖情况:

●摩擦过程的微粒行为和作用机制,国家自然科学奖二等奖(2018,排名4

●摩擦过程中微粒的行为、作用机制与控制,高等学校科学研究优秀成果奖(科学技术)自然科学一等奖(2010,排名5

●北京林业大学第五届优秀青年学术论文奖一等奖(2017);北京林业大学第二届青年学术论文奖二等奖(2011

●梁希青年论文奖三等奖(2012

●北京林业大学优秀研究生学位论文指导教师(2017

●北京林业大学优秀本科毕业论文指导教师(2014201520162017

●北京林业大学优秀班主任(2015

●北京林业大学工学院青年教师教学基本功三等奖(2012

●蒸发水滴中的液体流动特性研究,清华大学优秀博士论文二等奖(2008

●清华大学摩擦学国家重点实验室优秀学术贡献奖一等奖(20062009

●纳米颗粒运动观测系统,清华大学学生实验室建设贡献三等奖(2005

主要成果:

论文成果:

  1. Li W, Zhu L, Ma LR, Xu XF*, Dynamics of electron transfer and coupling between charging and discharging in triboelectrification between insulators. Friction (In Press).
  2. Zhu L, Li W, Ma LR, Xu XF*, Luo, JB. Observations on Valence-Band Electronic Structure and Surface States of Bulk Insulators Based on Fast Stabilization Process of Sample Charging in UPS. Laser & Photonics Reviews, 2024, 18(7): 2301069.
  3. Li W, Ma LR, Xu XF*, Luo JB. Bidirectional electron transfer in Triboelectrification caused by friction-induced change in surface electronic structure. Nano Energy, 2023, 114: 108667.
  4. Yu CZ, Ma LR, Xu XF*, Luo JB. "Phase Diagram" of Surface Temperature Distribution of Sessile Droplets and the Effects of Evaporative Cooling. Journal of Bionic Engineering, 2023, 20(3): 1132-1140.
  5. Li N, Ma LR, Xu XF*, Luo JB. Influence of "Seebeck effect" on charge transfer between two friction surfaces. Tribology International, 2021, 161: 107060.
  6. Xu LF, Ma LR, Xu XF*, Luo JB. The transients in the evaporation of sessile liquid droplets and the applicability of the steady-state approximation. International Journal of Heat and Mass Transfer, 2021, 169: 120946.
  7. Zhao XC, Ma LR, Xu XF*. Mode transition from adsorption removal to bombardment removal induced by nanoparticle-surface collisions in fluid jet polishing. Friction, 2021, 9(5): 1127-1137. (封面亮点文章)
  8. Li N, Ma LR, Xu XF*, Luo JB. Charge transfer dynamics in contact electrification of dielectrics investigated by triboluminescence. Journal of Luminescence, 2020, 227:117531.
  9. Zhao XC, Ma LR, Zhang Y, Xu XF*, Luo JB. Numerical simulation of the nanoparticle-surface collision in a liquid jet and its effects on material removal. Optical Engineering, 2020, 59(5): 055105.
  10. Zhang YR, Ma LR*, Wang KF, Xu XF*, Gao Y, Wen SZ, Luo JB. Triboluminescence modulated by humidity. Journal of Luminescence, 2017, 182: 22-28.
  11. Wang YL, Ma LR, Xu XF*, Luo JB. Expressions for the evaporation of sessile liquid droplets incorporating the evaporative cooling effect. Journal of Colloid and Interface Science, 2016, 484: 291-297.
  12. Wang YL, Ma LR, Xu XF*, Luo JB. Combined effects of underlying substrate and evaporative cooling on the evaporation of sessile liquid droplets. Soft Matter, 2015, 11(28): 5632-5640. (封底亮点文章)
  13. Xu XF*, Ma LR, Analysis of the effects of evaporative cooling on the evaporation of liquid droplets using a combined field approach, Scientific Reports, 2015, 5: 8614.
  14. Huang DD, Ma LR, Xu XF*. The capillary outward flow inside pinned drying droplets. International Journal of Heat and Mass Transfer, 2015, 83: 307–310.
  15. Zhang K, Ma LR, Xu XF*, Luo JB, and Guo D. Temperature distribution along the surface of evaporating droplets. Physical Review E, 2014, 89(3): 032404.
  16. Xu XF*, Ma LR, Huang DD, Luo JB, Guo D. Linear growth of colloidal rings at the edge of drying droplets, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2014, 447: 28-31.
  17. Xu XF*, Luo JB, Guo D. Radial-velocity Profile along the Surface of Evaporating Liquid Droplets, Soft Matter, 2012, 8(21): 5797-5803.
  18. Xu XF*, Luo JB, Guo D. Nanoparticle-wall collision in a laminar cylindrical liquid jet, Journal of Colloid and Interface Science, 2011, 359(2): 334-338.
  19. Xu XF, Luo JB, Guo D. Criterion for Reversal of Thermal Marangoni Flow in Drying Drops. Langmuir, 2010, 26(3): 1918-1922.
  20. Xu XF, Luo JB, Lu XC, Zhang CH, Guo D. Effect of impacting nanoparticles on material removal. Tribology Transactions, 2008, 51(6): 718-722.
  21. Xu XF, Luo JB. Marangoni flow in an evaporating water droplet. Applied Physics Letters, 2007, 91:124102.
  22. Xu XF, Luo JB, Yan J. A PIV system for two-phase flow with nanoparticles. International Journal of Surface Science and Engineering, 2008, 2(1-2): 168-175.
  23. Xu XF, Luo JB. Marangoni stress and its effects on the flow in an evaporating sessile droplet. 5th China International Symposium on Tribology/1st International Tribology Symposium of IFToMM, 2008 Beijing. Advanced Tribology, 2009: 186-187.
  24. 李娜, 徐学锋. 晶向对摩擦发光影响的实验研究及机理分析. 清华大学学报(自然科学版). 2021.
  25. Zhang K, Wang YL, Xu XF*. Influence of substrate thickness on temperature distribution along surface of drying droplets. Huagong Xuebao, 2015, 66 (2): 703-708.

发明专利:

[1] 徐学锋,高飞,王敏,一种摩擦发光发生与采集系统,中国,发明专利,授权号:2014105387097,授权时间:2017-01-04.

[2] 徐学锋,王敏,马丽然,赵晨曦,王奎芳,一种用于害虫诱捕的摩擦诱导紫外光发生装置,中国,发明专利,授权号:ZL201410821501.6,授权时间:2017-03-15.