代表性成果 | 代表性论文:[1] Liu Peng-zhan, Yao Yu, Zou Wen-jun, Peng Jin, Song Xu-dong, Xiao Fu-ren. Design of a CBN composite abrasive to improve the performance of HSG rail maintenance grinding wheel[J]. Construction and Building Materials, 2022, 319: 126073. [2] Liu Peng-zhan, Yuan Tian-shun, Zou Wen-jun, Peng Jin, Xiao Fu-ren. Study on the Preparation and Performance of Silicone-Modified Phenolic Resin Binder for Rail Grinding Wheels[J]. MOLECULES, 2023,28 (8). [3] Liu Peng-zhan, Zou Wen-jun, Peng Jin, Xiao Fu-ren. Investigating the Effect of Grinding Time on High-Speed Grinding of Rails by a Passive Grinding Test Machine[J]. MICROMACHINES, 2022, 13(12):2118. [4] Liu Peng-zhan, Zou Wen-jun, Peng Jin, Song Xu-dong, Xiao Fu-ren. Designed a Passive Grinding Test Machine to Simulate Passive Grinding Process[J]. Processes, 2021, 9(8): 1317. [5] Liu Peng-zhan, Zou Wen-jun, Peng Jin, Song Xu-dong, Xiao Fu-ren. Study on the Effect of Grinding Pressure on Material Removal Behavior Performed on a Self-Designed Passive Grinding Simulator[J]. Applied Sciences-Basel, 2021, 11(9): 4128. [6] Chen Zhao-qi, Liu Peng-zhan, Wu Tan-yang, Bai ,Guo-ju Xia Zi-jing, Han Ping. Parametric design and performance evaluation of TPMS porous vitrified bond diamond grinding wheel using digital light processing[J]. Ceramics International, 2014, 50(21): 41831-41847. [7] 姚煜, 刘鹏展, 邹文俊, 彭进, 简亚溜, 韩平.多孔CBN/Cu-Sn-Zn堆积磨料在钢轨打磨砂轮中的应用[J]. 金刚石与磨料磨具工程, 2022, 42(01): 69-75. [8] 李端, 李焕锋, 刘鹏展. 磨削压力及速度对钢轨被动打磨性能的影响[J]. 金刚石与磨料磨具工程, 2020, 40(02): 5-10. [9] 刘鹏展, 邹文俊, 彭进. 堆积磨料制备技术及堆积磨料砂带应用现状[J]. 超硬材料工程, 2017, 29(03): 40-44. [10] 邹文俊, 刘鹏展, 李焕峰, 李端, 韩平, 袁天顺, 简亚溜, 彭进. 一种钢轨被动打磨方式的测试平台, CN110579244A[P]. 2019-12-17. 代表性科研项目: 1. 河南省科技公关项目:242102231004。 2. 高性能工具全国重点实验室课题项目:GXNGJSKL-2025-01。 3. 参与河南省重大科技专项项目。 |