科研论文及成果 |
近期发表的主要论文:
[1] Zhang Yan, Zhang Xingquan, et al. Deformation behaviour, microstructural evolution and mechanical property of the shaped parts fabricated by laser shock forming with different laser energy. Optics and Laser Technology, 2025, 190: 113172. [2] Zhang Yan, Zhang Xingquan*, Zuo Lisheng. Microstructure evolution and strengthening mechanism of pure copper sheet induced by laser shock forming. Corrosion Science, 2024, 237: 112325. [3] Zhang Xingquan*, Hu Rui, Fang Jinxiu, et al.. A novel process of the bulged tube manufactured by laser-induced shock wave. Journal of Materials Processing Technology, 2024, 327: 118348. [4] Liu Yongheng, Zhang Xingquan*, Chen Xiuyu. Forming mono-axis curved thin-walled T-Section integral panels by double-sided laser peening. Journal of Materials Processing Technology, 2024, 330,118455. [5] 张兴权*, 刘航轩, 段士伟, 等. 激光轰击金属液面溅射过程的数值模拟. 力学学报, 2024, 56(1): 285-297. [6] Zhang Xingquan*, Zhu Rui, Fang Jinxiu, et al.. Microstructure evolution of 2024 aluminum alloy subjected to two stage laser shock sheet forming. Materials Characterization, 2024, 209: 113753. [7] Zhang Xingquan*, Liu Hangxuan, Wang Yinkai, et al.. Research on dynamic deformation behaviors of laser driving metal sheet precision forming. International Journal of Solids and Structures, 2024, 288: 112631. [8] Zhang Yan, Zhang Xingquan*, Zuo Lisheng, et al. Microstructure evolution and strengthening mechanism of pure copper sheet induced by laser shock forming. Materials Characterization,2024, 213: 114023. [9] Li Min , Liu Hangxuan, Zhang Xingquan*, et al. Effect of multiple laser peening on the wear resistance of 304 stainless steel. Industrial Lubrication and Tribology, 2023, 76(5): 591-598. [10] Wang Zhenwei, Wang Jianping, Zhang Xingquan*,et al. Cracking failure analysis of steel piston forging die. Engineering Failure Analysis, 2022, 138: 106291. [11] 王寅凯, 张兴权*, 左立生,等. 基于有限差分法薄板激光冲击响应的数值模拟. 力学学报, 2022, 54(4): 1063-1074. [12] Yang Hengji, Zhu Yousheng, Zhang Xingquan*, et al.. Investigation on surface“residual stress hole” of thin plate subjected to two sided laser shock processing. Optics and Laser Technology, 2022, 149: 107886.
近期获得授权发明专利:
[1] 张兴权, 纪啸天, 等. 一种可折叠的窗户加固机械装置及使用方法. 专利号: ZL202010315761.1. 授权日期: 2024.12.31. [2] 张兴权, 纪啸天, 等. 一种按键式自动起床装置及使用方法. 专利号: ZL202010000286.9. 授权日期: 2024.06.04. [3] 张兴权, 王振伟, 等. 一种基于双脉冲强激光技术的孔类零件内壁喷涂装置. 专利号:ZL 2019 1 1362196.8. 授权日期: 2023.06.23. [4] 张兴权, 胡星星, 等. 一种回转窑窑衬表面固结物破拆机器人及使用方法. 专利号: ZL202110167877.X. 授权日期: 2022.06.14. [5] 张兴权, 陈剑剑, 等. 一种测量板材激光冲击高速成形中碰撞过程装置及方法. 专利号: ZL202010179475.7. 授权日期: 2022.01.11. [6] 张兴权, 王寅凯, 等. 一种回转窑窑衬耐火砖破损巡检机器人. 专利号: ZL202110178414.3. 授权日期: 2022.06.07. [7] 张兴权, 朱友胜, 等. 一种回转窑窑衬破拆机器人及破拆方法. 专利号: ZL202110147215.6. 授权日期: 2022.06.03. [8] 张兴权, 王建平, 等. 一种管道爬壁清洗机器人. 专利号: ZL202110178338.6. 授权日期: 2022.03.11. [9] 张兴权, 陈剑剑, 等. 一种电液混合驱动双头破拆机器人及破拆方法. 专利号: ZL202010540708.1. 授权日期: 2022.03.08. [10] 张兴权, 陈涛, 等. 精确控制破拆深度的回转窑残余耐火砖破拆装置及方法. 专利号: ZL202010341376.4. 授权日期: 2021.10.15. [11] 张兴权, 纪啸天, 等. 一种激光冲压成形方法及装置. 专利号: ZL201811532201.0. 授权日期: 2020.05.05. [12] 张兴权, 陈剑剑等. 一种回转窑残余耐火砖的破拆机器人及破拆方法. 专利号: ZL201811547500.1. 授权日期: 2020.01.10.
|