个人概况: |
|
姓 名 |
张莉 |
职 称 |
副研究员 |
研究方向 |
铝合金加工;超声外场调控合金凝固过程 |
邮 箱 |
zhanglicsu@zzu.edu.cn |
教育和科研工作经历: |
2024.01--至今,郑州大学,先进轻合金材料研究所,副研究员 2022.12--2024.01,郑州大学,先进轻合金材料研究所,直聘副研究员 2020.05--2024.01,郑州大学,先进轻合金材料研究所,助理研究员 2020.01--2022.10,郑州大学,材料科学与工程学院,师资博士后,合作导师:关绍康 2015.09--2019.12,中南大学,材料科学与工程,博士学位 |
研究介绍: |
围绕轻质高强铝合金加工与废旧金属再生利用,开展超声外场调控铝合金凝固过程、再生铝组织调控方法与机制研究,主持国家自然科学基金面上项目、青年基金项目,河南省自然科学基金面上项目,博士后面上项目等,以第一/通讯作者发表SCI论文20余篇,授权国家发明专利4项。 |
荣誉与奖励: |
河南省科技进步一等奖:高效绿色连铸连轧电解铝合金板材关键技术与应用(2023,排名15); 河南省教育厅优秀科技论文一等奖(2024,排名2)。 |
代表性论著: |
Zhang Li*; Huang Guan; Wang Liguo; Lu Guangxi; Guan Shaokang; Microstructure strengthening correlation of 2219 Al alloy subjected to ultrasonic melt treatment, hot rolling and heat treatment, Journal of Materials Research and Technology, 27(2023): 7470-7481. |
Cai Jinxin; Zhang Li*; Li Longfei; Lu Guangxi; Xu Cong; Jiang Ripeng; Zhang Yanfang; Wu Lihong; Guan Shaokang; The synergistic effect of ultrasound and Er on the microstructure and mechanical properties of an Al–Cu alloy with high Fe content, Journal of Materials Research and Technology, 36(2025): 2053-2063. |
Liu Bingbing; Shi Chaoya; Huang Yanfang; Han Guihong; Sun Hu; Zhang Li*; Intensifying separation of Pb and Sn from waste Pb-Sn alloy by ultrasound-assisted acid leaching: Selective dissolution and sonochemistry mechanism, Ultrasonics Sonochemistry, 102(2024): 106758. |
Cai Jinxin; Zhang Li*; Lu Guangxi; Wu Lihong; Wang Liguo; Guan Shaokang; Evolution of Al2Cu Secondary Phase and Precipitation Strengthening of 2219 Al Alloy with Ultrasonic Melt Treatment, Hot Rolling, and Solution Aging, Advanced Engineering Materials, 26(2024): 2400963. |
Zhang Li*; Li Xiaoqian; Ge Shang; Huang Guan; Jiang Ripeng; Xie Jingpei; Guan Shaokang; Microstructure, mechanical properties, and formability of 1030B Al strip manufactured by ultrasound-assisted continuous casting direct rolling, Transactions of Nonferrous Metals Society of China, 2024.06. |
Zhu Shuhao; Wang Naiqian; Li Shuai; Huang Guan; Ge Shang; Du Peihua; Zhang Li*; Sun Yufeng; Guan Shaokang; Study on the materials flow, microstructure and mechanical properties of ultrasonic vibration-assisted friction stir weld of 1500 MPa martensitic steel. Materials Characterization, 206 (2023): 113409. |