雷磊

副教授

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个人简介

    雷磊,男,博士,硕士生导师。目前主要从事金属材料表面超声滚压处理、激光冲击强化、金属微结构调控、冲击性能、疲劳性能和腐蚀性能研究及高性能电子封装用复合材料的制备及应用方面的研究。近年来,以第一/通讯在本领域知名期刊《Carbon》、《Advanced Composites and Hybrid Materials》、《Journal of Materials Science and Technology》、《Corrosion Science》、《Journal of Materials Processing Technology》、《Materials Science and Engineering A》和《Materials Characterization》等学术刊物上发表SCI论文15篇。

基本信息

  • 所在单位:物理与光电工程学院
  • 学历:博士研究生毕业
  • 性别:男
  • 学位:工学博士学位
  • 职称:副教授
  • 毕业院校:西北工业大学

代表性论文

[1]    Lei Lei, Qinyang Zhao, Cong Wu, Yongqing Zhao, Shixing Huang, Weiju Jia, Weidong Zeng. Variant selection, coarsening behavior of α phase and associated tensile properties in an α+β titanium alloy. Journal of Materials Science & Technology, 2022, 99: 101-113.

[2]    Lei Lei, Qinyang Zhao, Cong Wu, Yongqing Zhao, Shixing Huang, Weiju Jia, Weidong Zeng. Gradient nanostructure, phase transformation, amorphization and enhanced strength-plasticity synergy of pure titanium manufactured by ultrasonic surface rolling. Journal of Materials Processing Technology, 2022, 299: 117322.

[3]    Lei Lei, Leandro Bolzoni, Fei Yang. High thermal conductivity and strong interface bonding of a hot-forged Cu/Ti-coated-diamond composite. Carbon, 2020, 168: 553-563.

[4]    Lei Lei, Leandro Bolzoni, Fei Yang. Interphase layer characteristics and thermal conductivity of hot-forged Cu-B/diamond composites. Advanced Composites and Hybrid Materials, 2021.

[5]    Lei Lei, Yu Su, Leandro Bolzoni. Fei Yang. Evaluation on the interface characteristics, thermal conductivity, and annealing effect of a hot-forged Cu-Ti/diamond composite. Journal of Materials Science & Technology, 2020, 49: 7-14.

[6]    Lei, Lei, Qinyang Zhao, Qiwei Zhu, Ming Yang, Wenxing Yang, Weidong Zeng, and Yongqing Zhao. Twinning-Induced High Impact Toughness of Titanium Alloy at Cryogenic Temperature. Materials Science and Engineering: A, 2022, 860: 144258.

[7]    Lei Lei, Yongqing Zhao, Qinyang Zhao, Cong Wu, Shixing Huang, Weiju Jia, Weidong Zeng. Impact toughness and deformation modes of Ti-6Al-4V alloy with different microstructures. Materials Science and Engineering: A, 2021, 801: 140411.

[8]    Lei Lei, Qinyang Zhao, Yongqing Zhao, Shixing Huang, Cong Wu, Weiju Jia, Weidong Zeng. Study on the intrinsic factors determining impact toughness of TC21 alloy. Materials Characterization, 2021, 177: 111164.

[9]    Lei Lei, Qiwei Zhu, Qinyang Zhao, Ming Yang, Wenxing Yang, Weidong Zeng, and Yongqing Zhao. Low-Temperature Impact Toughness and Deformation Mechanism of CT20 Titanium Alloy. Materials Characterization, 2023, 195: 112504.

[10]Fang Hao, Xianghong Liu*, Yuxuan Du*, Youchuan Mao, Haisheng Chen, Shaoqiang Li, Kaixuan Wang, Lei Lei*. Excellent dynamic mechanical properties of a newly developed titanium alloy with bimodal structure, Journal of Alloys and Compounds, 961(2023): 170980.

[11]Yang Ming, Lei Lei*, Yun Jiang*, Fahong Xu, and Cunhong Yin. Simultaneously Improving Tensile Properties and Stress Corrosion Cracking Resistance of 7075-T6 Aluminum Alloy by USRP Treatment. Corrosion Science, 218 (2023): 111211.

[12]Zhifang Xiong, Yun Jiang, Ming Yang*, Yan Zhang, Lei Lei*. Achieving superior strength and ductility in 7075 aluminum alloy through the design of multi-gradient nanostructure by ultrasonic surface rolling and aging. Journal of Alloys and Compounds, 2022, 918: 165669.

科学研究

教学研究