
基本情况
姓名:孙倩
出生年月:1990.06.02
职称:副教授
导师类别:硕士生导师
主要研究方向:新能源汽车轻量化;金属零部件电磁冲击强化
工作单位:武汉理工大学 汽车工程学院
教育背景
2012.09 - 2017.12, 中国科学技术大学 材料加工工程 博士
2008.09 - 2012.07, 重庆大学 冶金工程 本科
工作经历
2024.09 -至今 武汉理工大学 汽车工程学院 副教授
2020.07 - 2024.09, 武汉理工大学 汽车工程学院 讲师
2017.12 - 2020.06, 武汉理工大学 汽车工程学院 博士后
奖励情况
研究成果获中国机械工业科学技术发明奖二等奖1项(2023)。
科研项目情况
[1] 2023.01 - 2026.12,低能电磁脉冲选择性调控钛合金界面微结构及其对疲劳性能影响机制研究,国家自然科学基金,面上项目,主持
[2] 2019.01 - 2021.12,高强铝合金热冲压析出相遗传演化规律及其对性能影响机制,国家自然科学基金,青年科学基金项目,主持
[3] 2022.07 - 2023.06,商用车底盘关键构件结构分析与优化,企业委托研发项目,主持
[4] 2019.07 - 2024.06,超大尺度金属材料构件均质化构筑成形基础(子课题),国家重点研发计划,重点专项,参与
[5] 2020.10 - 2025.09,航空发动机叶片和轴承超极限性能电磁复合场制造新技术(课题3),国家重点研发计划,重点专项,参与
代表性学术成果
已发表论文:
[1] Qian Sun, Hongxiang Jiang, Jiuzhou Zhao*, Jie He, Microstructure evolution during liquid-liquid phase transformation of Al-Bi alloys under effect of TiC particles, Acta Materialia, 2017, 129: 321-330.
[2] Qian Sun, Lin Hua, Micro texture of titanium alloys excited nonlinearly by electromagnetic pulse, Scripta Materialia, 2021, 200: 113828.
[3] Yunfeng Li, Fanglei Wang, Qian Sun*, Dongsheng Qian, Yanli Song, Lin Hua, Study on the microstructure and impact toughness of TC11 titanium alloy by a novel electromagnetic shocking treatment, Materials Science and Engineering A, 2023, 876: 145149.
[4] Qian Sun, Fanglei Wang, Yaxuan Duan, Jue Lu, Lin Hua, Suohui Liang, Interface microstructure evolution and mechanical properties enhancement of lamellar TC11 alloy under electromagnetic shocking treatment, Journal of Alloys and Compounds, 2025, 1020: 179437.
[5] Zhili Hu, Jia Zheng, Qiu Pang, Qian Sun*, Ning Zhao, Influence of strain rates and aging time on microstructure and hardness of integrally compressed 6082 aluminum alloy, Journal of Materials Research and Technology, 2023, 27: 826-838.
[6] Qian Sun, Hongxiang Jiang, Jiuzhou Zhao*, Jie He,Effect of TiC particles on the liquid–liquid decomposition of Al-Pb alloys, Materials & Design, 2016, 91: 361-367.
[7] Qian Sun, Haojie Wang, Sha Yu, Feng Wang, Yanli Song, Lin Hua, Dongsheng Qian, Reducing stress corrosion cracking susceptibility of high-strength aluminum alloy and its fastener by a novel electromagnetic shocking treatment, Journal of Alloys and Compounds, 2023, 960: 170917.
[8] Huijuan Ma, Wenjie Mao, Ning Zhao, Hui Zhu, Peiliao Wang, Qian Sun*, Zhili Hu*, Liang Huang, Jianjun Li, Mechanical properties and microstructure evolution of 2219 aluminum alloy via electromagnetic ring expansion & electromagnetic treatment, Journal of Alloys and Compounds, 2023, 947: 169615.
[9] Qian Sun, Qi Xiang, Guojing Ren, Lin Hua, Yi Yang, Electromagnetic shocking treatment induced grain bridging improved the impact toughness of 6082 aluminum alloys, Journal of Materials Research and Technology, 2025, 38: 3000-3014.
[10] Feng Wang, Qian Sun, Haichao Ren, Nana Cao, Xinda Song, Song Deng, Min Wu, Dongsheng Qian, A novel quenching-electroshocking-tempering process for toughness improvement by microstructure refining and austenite stability tailoring in aviation bearing steel, Materials Science and Engineering A, 2022, 854: 143817.(共同一作)
[11] Qian Sun, Chao Xu, Sha Yu, Zhili Hu, Effect of isothermal multidirectional compression on microstructure and mechanical properties of Al-Zn-Mg-Cu-Zr alloy with minor Sc addition, Materials Chemistry and Physics, 2024, 313: 128769.
[12] Qian Sun, Sha Yu, Hong Wang, Huijuan Ma, Huanhuan Li, Zhili Hu, Experimental and simulation study for the influence of thermal pre-deformation on subsequent aging precipitation kinetics of Al-Zn-Mg-Cu alloy, Materials, 2022, 15, 4634.
[13] Feng Huang, Daoling Zhang, Yingchuan Deng, Zhe Cheng, Qian Sun*, Zhili Hu*, Lin Hua, Comparative study on Microstructure and Mechanical Properties of the 6082-0.2Zr-0.3Er Alloy Treated with Pre-hardened Hot Forming, Materials, 2025, 18: 616
[14] Qian Sun, Lehui Liu, Sha Yu, Hong Wang, Haojie Wang, Gradient phase transformation of Al-Zn-Mg-Cu alloy induced by nonlinear interface wetting under electromagnetic shocking treatment, Journal of Materials Science, 2023, 58: 16239-16255.
[15] Qian Sun, Haojie Wang, Sha Yu, Huijuan Ma, Jia Zheng, Zhili Hu, Effect of Sc on the recrystallization behavior and mechanical properties of Al-Zn-Mg-Cu-Zr alloys under isothermal multidirectional compression, Materials Today Communications, 2024, 39 108986.
[16] Qian Sun, Yongming Yu, Feng Wang, A novel electromagnetic shock treatment to selectively modify grain boundary and improve the corrosion resistance of aluminium alloy, Materials Letters, 2023, 334:133703.
已授权专利:
[1] 孙倩,华林,胡志力,一种磁处理改性铝合金汽车车身板材及其制备方法,ZL201810814248.X
[2] 孙倩,王宏,华林,孙向阳,脉冲电流调控轧制钛合金局部织构的方法,ZL202110122762.9
[3] 孙倩,孙向阳,华林,王宏,采用脉冲电流原位制备软硬复合金属材料的方法,ZL202110122776.0
[4] 孙倩,於永明,华林,李云峰,改善固态金属界面连接性及界面特征分布的方法,ZL202210588286.4
[5] 孙倩,华林,王丰,钱东升,许书铭,张天驰,王勇,李宁,一种提升钛合金热疲劳电磁冲击技术方法,ZL202310649429.2
[6] 华林,孙倩,一种采用电、磁及电磁耦合脉冲改性金属零件的方法,ZL201910629121.5
[7] 华林,孙倩,胡志力,一种稀土改性铝合金汽车车身板材及其制备方法,ZL201810812628.X
[8] 华林,孙倩,吴敏,洪峰,一种金属轴承微观组织缺陷无创修复方法,ZL202011155154.X
[9] 华林,孙倩,钱东升,王丰,赵尹攀,李宁,刘怡,王勇,一种提升铝合金应力腐蚀疲劳性能电磁冲击技术方法,ZL202310649455.5
[10] 钱东升,王丰,孙倩,华林,王勇,张天驰,刘怡,赵尹攀,一种轴承钢滚动接触疲劳性能电磁冲击提升方法,ZL202310641707.X
[11] 王丰,钱东升,孙倩,华林,张天驰,许书铭,李宁,赵尹攀,一种提升钛合金应力疲劳性能的电磁冲击技术方法,CN202310649444.7
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