代表性论文如下:
[1] Zhiping Liu, Zelong Li, Duo Lyu, et al. Virtual source total focusing method for surface defects using leaky Rayleigh waves. Applied acoustics, 2025, 228: 110329. [2] Shengchang Xie, Zhiping Liu*. A Review of Vector Field-Based Tool Path Planning for CNC Machining of Complex Surfaces. Symmetry, 2025, 17(8): 1300. [3] Zhiping Liu, Zelong Li, Duo Lyu, et al. Imaging Method of Surface Defect Using Leaky Rayleigh Wave with Ultrasonic Phased Array. Nondestructive Testing and Evaluation, 2024, 40(6): 2311–2328. [4] Zhiping Liu, Zhiwu Zhang, Duo Lyu, et al. Ultrasonic Phased Array Total Focusing Method of Imaging with Rayleigh Waves Based on Principal Component Analysis. Russian Journal of Nondestructive Testing, 2023, 59: 346–358. [5] Zhiping Liu, Xiongbing Li, Bing Yi. Generating spiral tool path to machine free-form surface with complex topology based on fusing constraint mapping and enriched voronoi diagram. International Journal of Advanced Manufacturing Technology, 2019, 102: 647-658. [6] Xiongbing Li, Zhiping Liu, Fulin Wang, et al. Combining physical shell mapping and reverse-compensation optimisation for spiral machining of free-form surfaces. International Journal of Production Research, 2019, 57(13-14): 4118-4131. [7] Zhiping Liu, Xiongbing Li, Yongfeng Song, et al. Lofting-based spiral tool path generation algorithm for milling a pocket with an island. International Journal of Advanced Manufacturing Technology, 2017, 88: 2169-2178. [8] Zhiping Liu, Xiongbing Li, Yongfeng Song, et al. Generating Spiral Tool Paths Based on Spiral Enter Assistant Line. International Journal of Advanced Manufacturing Technology, 2017, 92: 869-879. |
代表性专利如下: [1] 刘芝平, 李泽龙, 胡宏伟等. 一种基于虚拟源的超声漏表面波全聚焦成像方法, 公开号:CN117191948A, 公开日:2023/12/08. [2] 刘芝平, 李泽龙, 胡宏伟等. 一种基于均方根速度的超声相控阵漏表面波全聚焦成像方法, 公开号:CN117092218A, 公开日:2023/11/21. [3] 刘芝平, 李泽龙, 胡宏伟等. 基于非近轴近似多元高斯声束模型的超声相控阵瑞丽波声场计算方法, 公开号:CN116773680A, 公开日:2023/9/19. [4] 胡宏伟, 杨德草, 刘芝平等. 一种基于超声相控阵漏表面波的曲面合成孔径成像方法, 公开号:CN117233254A, 公开日:2023/12/15. [5] 李雄兵, 宋永锋, 刘芝平, 易兵. 一种基于起旋辅助线的型腔高速螺旋铣削方法, 授权专利号: ZL 201610817053.1, 授权日期: 2018/05/04. |