|
|

朱武军
讲师
E-mail: wujunzhu@ecust.edu.cn;zhuwujun20@126.com
地址:上海市徐汇区梅陇路130号实验17楼612室
教育与工作经历:
2023- 华东理工大学 机械与动力工程学院 讲师
2019-2022 华东理工大学 机械与动力工程学院 博士后
2012-2019 华东理工大学 机械与动力工程学院 博士
2008-2012 中国石油大学 化学工程学院 学士
(1) 复杂结构非线性超声发生机理
(2) 结构损伤非线性超声检测方法
(3) 数据驱动服役状态评估与寿命预测
(1) 国家自然科学基金青年基金,2021/01至2023/12,主持
(2) 国家重点研发计划子课题, 2021/12至2024/11,主持
(3) 国家重点研发计划子课题, 2021/12至2025/11,主持
(4) 中国博士后基金,2019/10至2021/09,主持
(1) 机械学基础
(2) 智能制造综合实验
(3) 人机交互技术
(1) 上海市科学进步奖一等奖
(2) 上海市互联网+大赛产业组铜奖
(3) 中国声学学会优秀博士论文
指导学生获奖
(1) 中国大学生机械工程创新创意大赛过程装备实践与创新赛,国赛三等奖
(2) 中国大学生机械工程创新创意大赛过程装备实践与创新赛,长三角赛区一等奖
(3) 上海市大学生“创造杯”大赛,二等奖
(4) 中国大学生机械工程创新创意大赛失效分析赛,上海市分区赛三等奖
代表性论文
(1) Wujun Zhu, Junyu Gu, Yanxun Xiang*, et al. Counter-directional mixing of longitudinal guided waves for fatigue damage detection in pipes. Ultrasonics, 2026, 165: 108057.
(2) Wujun Zhu, Yanxun Xiang*, Menghui Jiang, et al. Baseline-Free Localization of Kissing Bonds in Bonded Structures Using Nonlinear Lamb Wave Responses Under Dual-Amplitude Excitations. Nondestructive Testing and Evaluation. 2026. doi: 10.1080/10589759.2026.2693717
(3) Weitao Chen, Xiewen Liu, Wujun Zhu*, et al. Integrated triple-frequency transducer for one-way wave mixing: theory, verification and weak bond detection. Measurement. 2026, 287: 122569.
(4) Xiewen Liu, Wujun Zhu*, Yanxun Xiang, et al. Modeling and simulation of enhanced pipe detection performance via zero group velocity combined harmonics generated by counter-directional guided waves mixing. Ultrasonics, 2026,167: 108161.
(5) Xiewen Liu, Dian Lv, Wujun Zhu*, et al. Investigation of Non-Classical Creep Behaviors in a Fe-Cr-Ni Alloy at 540℃–600℃: Microstructural Origins and Effects. International Journal of Pressure Vessels and Piping, 2026, 222: 105799.
(6) Xiewen Liu, Wujun Zhu*, Yanxun Xiang, et al. Disbonds detection in variable-thickness bonded plates based on attenuation of zero group velocity Lamb modes. Composite Structures,2026, 384: 120160.
(7) Di Sun, Wujun Zhu*, Yanxun Xiang*, et al. Decoding nonlinear ultrasonic time-frequency characteristics for fatigue crack quantification and localisation via CNN. Nondestructive Testing and Evaluation, 2025, 40(5): 2188-2207.
(8) Di Sun, Wujun Zhu*, Yanxun Xiang*, et al. Data-driven online prediction of remaining fatigue life of a steel plate based on nonlinear ultrasonic monitoring. Ultrasonics, 2024, 142: 107356.
(9) Di Sun, Wujun Zhu*, Xunlin Qiu, et al. Nonlinear Ultrasonic Detection of Closed Cracks in Metal Plates with Phase-Velocity Mismatching. NDT&E International. 2023, 135: 102788.
(10) Wujun Zhu, Zisheng Xu, Yanxun Xiang*, et al. Nonlinear Ultrasonic Detection of Partially Closed Cracks in Metal Plates Using Static Component of Lamb Waves. NDT&E International. 2021, 124:102538.
(11) Taotao Ding, Wujun Zhu*, Congyun Ma, et al. Influence of cyclic-loading induced fatigue micro-crack growth on generation of nonlinear ultrasonic Lamb waves. Journal of Nondestructive Evaluation, 2021, 40:62.
(12) Xiao Wang#*, Yanxun Xiang#*, Wujun Zhu#, et al. Damage assessment in Q690 high strength structural steel using nonlinear Lamb waves. Construction and Building Materials, 2020, 234: 117384.
(13) Wujun Zhu; Yanxun Xiang*; Changjun Liu; et al. A feasibility study on fatigue damage evaluation using nonlinear Lamb waves with group-velocity mismatching. Ultrasonics, 2018, 90: 18-22.
(14) Wujun Zhu; Yanxun Xiang*; Changjun Liu; et al. Fatigue Damage Evaluation Using Nonlinear Lamb Waves with Quasi Phase-Velocity Matching at Low Frequency. Materials, 2018, 11(10): 1920.
(15) Wujun Zhu; Yanxun Xiang*; Changjun Liu; et al. Symmetry properties of second harmonics generated by antisymmetric Lamb waves. Journal of Applied Physics, 2018, 123(10): 104902.
(16) Wujun Zhu; Mingxi Deng; Yanxun Xiang*; et al. Modeling of ultrasonic nonlinearities for dislocation evolution in plastically deformed materials: Simulation and experimental validation. Ultrasonics, 2016, 68: 134-141.
(17) Wujun Zhu; Mingxi Deng; Yanxun Xiang*; et al. Second Harmonic Generation of Lamb Wave in Numerical Perspective. Chinese Physics Letters, 2016, 33(10): 104301.
授权专利
(4) 基于注意力机制的超声波损伤检测分析方法及其应用
(5) 基于非线性激光超声的超高周疲劳损伤检测系统及方法
(6) 一种基于线性功放的非线性超声导波检测系统及方法
(7) 基于PWM编码激励的非线性超声导波检测系统及方法
(8) 一种基于任意波形的非线性超声导波检测装置
(9) 一种非线性超声导波检测装置
学术主页
Researchgate: http://www.researchgate.net/profile/Wujun-Zhu
|
版权所有 © 2019 华东理工大学机械与动力工程学院
网站管理 地址:上海市梅陇路130号 邮编:200237 |