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徐肖飞

2023-05-22 吴晴 

 

姓名:徐肖飞

性别:男

职称:讲师

学历学位:博士研究生

/博士生导师:硕士生导师

研究方向:金属材料先进成形

电话:

E-mailxxfei@huat.edu.cn

个人简介

2022年获湘潭大学工科博士学位,从事金属材料先进成形、焊接及相关多物理场耦合仿真研究,与湘潭大学bet体育365官网正规欧阳晓平(院士)、国家脉冲强磁场科学中心李亮(杰青、973首席科学家)等团队保持紧密合作。在Int. J. FatigueInt. J. Adv. Manuf. Tech.J. Appl. Phys.等国际期刊发表多篇论文。

 

教育经历:

2011.09-2015.06,湘潭大学材料科学与工程专业,本科

2015.09-2018.06,湘潭大学材料科学与工程专业,硕士 (导师:蒋丽梅)

2018.09-2022.06,湘潭大学材料科学与工程专业,博士 (导师:欧阳晓平)

2019.02-2022.06,国家脉冲强磁场科学中心,博士联培 (导师:李亮)

 

工作经历:

2022.07-至今 BET体育365投注官网,讲师

 

教学情况

主讲或参与讲授的本科生及研究生课程情况

主讲《材料成形专业英语》;

参与讲授《材料成型工艺及模具设计》、《塑料模具设计》。

 

 

研究课题

主持或参加科研项目情况:

1、BET体育365投注官网博士科研启动基金,BK202221,铝合金-高强钢管件磁脉冲焊接窗口的构建及接头失效机制研究。2022.12-2026.12,主持。

2、国家自然科学基金,51971190,基于调幅强化的低模量高强度β钛合金的设计与微 结构调控,参与。

 

 

获奖及专利

1、蒋丽梅,徐肖飞,周益春. 一种位错对铁电材料畴结构影响机理的分析方法,中国发明专利,授权号: CN201710193785.2.

 

 

主要论文及著作

[1] Xu Xiaofei, Geng Huihui, Ouyang Shaowei, Li Changxing, Cao Quanliang, Ouyang Xiaoping*, Li Liang*. Improvement in fatigue performance of thin fasteners via electromagnetic strengthening process. International Journal of Fatigue, 2022, 162: 106991.

[2] Xu Xiaofei, Geng Huihui, Cao Qingshan, Cao Quanliang, Li Liang*, Ouyang Xiaoping*. Numerical investigation on the effects of circuit parameters on the plastic deformation of fastener holes in thin aluminum alloy via electromagnetic expansion process. The International Journal of Advanced Manufacturing Technology, 2021, 117:795-807.

[3] Xu X, Jiang L, Zhou Y. Reduction of leakage currents in ferroelectric thin films by flexoelectricity: A phase field study. Smart Materials and Structures, 2017, 26(11): 115024.

[4] Geng Huihui, Xu Xiaofei, Lai Zhipeng, Cao Quanliang*, Li Liang*. A novel non-contacting single-coil electromagnetic hole expansion process to improve the fatigue performance of hole component. International Journal of Fatigue, 2022, 162: 106924.

[5] Geng Huihui, Xu Xiaofei, Cao Quanliang, Lai Zhipeng, Li Liang*. Improving the fatigue performance of AZ31 sheet with hole via electromagnetic cold expansion process. The International Journal of Advanced Manufacturing Technology, 2022, 120: 5057-5071.

[6] Ouyang Shaowei, Xu Xiaofei, Li Xiaoxiang, Lai Zhipeng, Han Xiaotao, Cao Quanliang*, Li Liang*. Systematic investigation of deformation behavior of tubes in a three-coil electromagnetic forming process. The International Journal of Advanced Manufacturing Technology, 2022, 1: 1-12.

[7] Jiang L*, Xu X, Zhou Y*. Interrelationship between flexoelectricity and strain gradient elasticity in ferroelectric nanofilms: A phase field study. Journal of Applied Physics, 2016, 120(23): 234102.

[8] Jiang L*, Xu X, Zhou Y*. Strain tunability of the downward effective polarization of mechanically written domains in ferroelectric nanofilms. RSC Advances, 2016, 6(84): 80946-80954.

[9] Jiang L*, Xu X, Zhou Y*. Influence of flexoelectric effects on current-voltage characteristic of polydomain in ferroelectric thin films. Procedia IUTAM, 2017, 21:56-62.

 

 

 



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