教育背景:
2005年9月-2009年7月,吉林大学,机械设计制造及其自动化,学士
2009年9月-2014年7月,吉林大学,机械制造及其自动化,博士研究生
2012年8月-2014年3月,新加坡国立大学,机器人控制实验室,联合培养博士
研究工作经历:
2025年1月-至今,苏州大学未来科学与工程学院,教授
2023年7月-2024年12月,苏州大学机电工程学院,教授
2023年7月-至今,苏州大学机器人与微系统研究中心,教授
2017年7月-2023年6月,苏州大学机电工程学院,机器人与微系统研究中心,副教授(首批苏大优秀青年学者)
2014年8月-2017年6月,苏州大学机电工程学院,机器人与微系统研究中心,讲师
2014年10月-2017年9月,苏州大学光学精密工程博士后流动站,博士后
高精度复杂曲面构件广泛应用于光学工程、航空航天、国防和高端医疗器械等领域,直接关系国民经济发展和国防安全。随着复杂曲面构件的进一步轻量化、精密化、集成化的发展要求,对超精密制造新工艺、新技术和新装备的需求越来越迫切。此类构件要求的表面质量、尺寸精度、面形精度等已经超过机床所能达到的精度极限,无法单纯依靠机床定位精度来保证此类构件的高精度和高性能。
以光学工程、航空航天和高端医疗器械等领域的复杂曲面构件的精密高性能制造需求为牵引,在复杂曲面可控柔性抛光领域,围绕多物理场可控柔性抛光新原理、柔性抛光面形精度调控新策略、复杂曲面高性能可控柔性磨抛新装备三个方面持续开展研究。
具体研究兴趣包括:
主要研究方向包括:复杂曲面高效高精度可控柔性抛光方法;多物理场辅助可控柔性抛光工艺及调控;光学曲面全频域面形误差迭代收敛策略;硬脆材料的多尺度去除机理及损伤抑制;机器人化的柔顺性抛光力控技术及装备
在研项目:
(1)国家自然科学基金(面上项目):低温/电场复合作用下折柔性人工晶状体的流变液抛光机理及调控方法研究(51975392)项目负责人
(2)江苏省基础研究计划(面上项目):柔性透镜温频耦合柔性超精密抛光关键技术研究,(BK20221361),项目负责人
(3)“高性能制造技术与重大装备”重点专项(青年科学家项目)硬脆薄壁异形构件柔性高性能制造技术研究--“柔顺性高性能制造关键技术与工艺”合作单位负责人
(4)江苏省基础研究计划(自然科学基金): 基于等离子体注入的高精度SiC曲面高效无损伤抛光机理研究(BK20150330)项目负责人
(5)国家自然科学基金(青年基金): SiC曲面等离子改性/固着磨料随形抛光方法研究(51505312)项目负责人
(6)中国博士后第57批面上资助:高精度SiC曲面等离子改性/固着磨料随形抛光新技术(2015M571800)项目负责人
(7)苏州大学-辰轩光电智能制造协同创新中心,横向课题,200万,项目负责人
(8)国家自然科学基金(青年基金): 面向微结构表面超精密加工的纳米驱动、感知一体化智能进给单元集成设计与调控方法,2016.01-2018.12,项目参与人
(9)国家自然科学基金面上项目:弱钝化薄膜设计及碱性下铝低压力平坦化材料高效去除机制,2018.01-2021.12,项目参与人
(10)国家自然科学基金面上项目:基于人臂运动特性的柔性双仿人臂点位约束作业规划与关节刚度控制,2017.01-2020.12,项目参与人
未来科学与工程学院/机器人与微系统研究中心-智能精密制造组
主讲课程包括:
(1)《机械工程专业英语》
(2)《工业机器人》
(3)《自动检测技术》
(4)《控制工程基础》
指导学生获奖:
[1] 2021年全国大学生智能精密装配邀请赛(微细穿孔)樊成,卢磊,孙立宁。主办单位:中国机械工业学会举办
[2] 2021年全国大学生智能精密装配邀请赛(导轨精密装配)卢磊,樊成,孙立宁。主办单位:中国机械工业学会举办
[3] 2021年全国大学生智能精密装配邀请赛(综合奖)卢磊,樊成,孙立宁。主办单位:中国机械工业学会举办
[4] 指导本科生课外学术科研竞赛1项(“二十二批课外学术基金”重大项目)
[5] 苏州大学“天宫杯”(缪宇杰、张云飞、赵巧羽、傅思捷、魏千) (特等奖)
代表作:
[1] Zhibin Yu, Zhenyu Zhang*, Zinuo Zeng, Cheng Fan*, Yang Gu, Chunjin Shi*, Hongxiu Zhou*, Fanning Meng, Junyuan Feng. Atomic surface of diamond induced by novel green photocatalytic chemical mechanical polishing with high material removal rate. International Journal of Extreme Manufacturing. 2025, 7: 025102. (IF=21.3)
[2] Jun Zhao*, Wenbing Wang, Xianwei Qiu, Zixuan Wang*, Cheng Fan*. Material removal profile model simulations and experiments on the non - contact shear thickening polishing of K9 glass. Journal of Manufacturing Processes. 2025, 134: 435 - 451.
[3] Cheng Fan, Xue Qi, Senhao Xie, Binbin Meng, Fusheng Liang, Zhao Wang, Jun Zhao, Tao Chen, Wule Zhu, Xiaofei Yang. Material Removal Prediction and Abrasive Swarm Performance in Electrorheological Polishing of Zirconium - based Amorphous Alloy with Multi - layer Electrodes. Tribology International, 2025, 204: 110508. 一区TOP
[4] Zhibin Yu, Zhenghao Jia, Wei Liu*, Zhenyu Zhang*, Feng Zhao, Cheng Fan*, Hansheng Zhang, Yiqiang Lyv, Dongdong Liu. Facet - Dependent oxidative fabrication of diamond determined by operando scanning electron microscopy. Nano Letters, 2025, 25, 5391−5397.
[5] Cheng Fan, Reng Zhang, Jianfa Bu, Zhao Wang, Fusheng Liang, Tao Chen, Lei Zhang, Wei Ji, Zhenyu Zhang, Xuan Li, Marian Wiercigroch*, Jun Zhao*,Yanjun Han. Modelling of submerged air jet polishing process. International Journal of Mechanical Sciences. 294 (2025) 110246. (IF=9.4)
[6] Zhao Wang, Junfei Xu Yue Yang*, Zhi Han, Yinghao Li, Linyao Wu, Fusheng Liang*, Cheng Fan*. Surface profile modelling of inclined - axis polishing based on the microscopic material removal behaviour of abrasive particles. Tribology International, 209 (2025) 110738.
[7] Feng Zhao, Zhenyu Zhang*, Hongxiu Zhou*, Leilei Chen*, Kuo Hai, Liwei Wu, Jiahao Yu, Zefang Zhang, Cheng Fan*. Unprecedented developed composite polishing system to achieve atomic surface integrating rough and fine polishing using a novel hyper - conjugated pad through controlling the temperature of a proposed green slurry. Advanced Composites and Hybrid Materials, 2025, 8: 234. (IF=21.8)
[8] Binbin Meng, Zhi Han, Fusheng Liang, Cheng Fan*. Mechanism of the influence of vibration dimensions on the removal behavior of SiC ceramics at the nanoscale: convection impact effect and chip separation. Surfaces and Interfaces, 2025, 72:107077.
[9] Cheng Fan, Zhi Han, Congyu Zha, Gaopeng Sun, Wenbin Wang, Junfei Xu, Feng Zhao, Fusheng Liang, Zhao Wang. A new compliant polishing method using 3D - printed elastic polishing tool with TPMS structure. Journal of Manufacturing Processes, 2025, 153(15): 788 - 804
[10] Zhao Wang, Xiaowen Rong, Haoran Zhao, Yue Yang*, Fusheng Liang*, Cheng Fan*. Modelling of abrasive particle distribution for pre - mixed abrasive water jet peening surface.CIRP Journal of Manufacturing Science and Technology, 2025, 63: 135 - 155.
[11] Zhao Wang, Zixuan Wang, Yingdong Liang, Fanwei Meng, Zhijie Cui, Tao Chen, Yue Yang*, Cheng Fan*, Tianbiao Yu, Ji Zhao. Modelling of polyurethane polishing pad surface topography and fixed - point polished surface profile. Tribology International, 2024, 195, 109646.
[12] Zirui Wang, Qingyu Yao, Ping Sun, Wang Yongguang*, Cheng Fan*. Friction properties and mechanism of aluminum sheets under an eco - friendly CMCS lubrication condition. Tribology Letters, 2024, 72: 27.
[13] Cheng Fan, Wei Jiang, Congyu Zha, Zhao Wang, Tao Chen, Fusheng Liang. A new end edge repairing method for flat end mills on a four - axis machine tool using an irregular grinding wheel. Journal of Manufacturing Processes, 2024, 112: 313 - 328.
[14] Cheng Fan, Caoyang Xue, Jun Zhao, Wei Jiang, Wenge Han, Lei Zhang, Lining Sun. Process planning and contour - based error compensation for precision grinding of the miniature scalpel. Advances in manufacturing. 2024, 12 (1): 108 - 123.
[15] Jianwei Ji, Cheng Fan*, Binbin Meng*. Optimizing machinability and minimizing dislocation slip in hexagonal silicon carbide: The role of off - axis angle and processing surface type. Journal of Manufacturing Processes. 2024, 132, 26: 93 - 104.
[16] Cheng Fan, Xingfeng Wang, Kaixuan Liu, Yigang Chen, Fusheng Liang, Zhao Wang, Jun Zhao. Material removal mechanism in and experiments of electrorheological polishing of foldable intraocular lenses at low temperatures. Journal of Manufacturing Processes. 2023, 101: 1032 - 1045.
[17] Guang Xia, Zirui Wang, Qingyu Yao, Ping Sun, Huaijun Guan, Yongguang Wang*, Cheng Fan*, Da Bian, Dong Zhao, Yongwu Zhao. Modeling of material removal rate considering the chemical mechanical effects of lubricant, oxidant, and abrasive particles for aluminum chemical mechanical polishing at low pressure. Wear, 2023, 530 - 531, 205023.
[18] Zhao Wang, Zhelun Ma, Tao Chen*, Cheng Fan*, Tianbiao Yu, Ji Zhao. Experimental investigation into the effect of process parameters on the Inconel 718 surface integrity for abrasive waterjet peening. Surface & Coatings Technology, 2023, 454, 129186.
[19] Cheng Fan, Kaixuan Liu, Yongguang Wang, Lei Zhang, Lining Sun. Nano - indentation and nano - scratch of flexible intraocular lens material at the molecular scale. Acta Mechanica Sinica, 2023, 39(1): 122331.
[20] Yang Li, Fusheng Liang, Lei Lu, Cheng Fan*.Improved time - optimal B - spline feedrate scheduling for NURBS tool paths in CNC machining. Advances in Manufacturing. 2023, 11 (1): 111 - 129.
[21] Lei Zhang, Chen Ding, Zhao Wang, Cheng Fan*. Multiphase flow field analysis and experimental study of pulsating air jet polishing. Journal of Manufacturing Science and Engineering - Transactions of the ASME. 2022, 144(12): 121014.
[22] Lei Zhang, Chen Ding, Yanjun Han, Zhirui Zhang, Cheng Fan*. Investigation into a novel pulsating cavitation air jet polishing method for Ti - 6Al - 4V alloy. Tribology International. 2022, 175, 107837.
[23] Lei Lu, Lei Zhang, Cheng Fan*, Hao Wang*. High - order joint - smooth trajectory planning method considering tool - orientation constraints and singularity avoidance for robot surface machining. Journal of Manufacturing Processes. 2022, 80, 789 - 804.
[24] Cheng Fan, Kaixuan Liu, Yongguang Wang, Lei Zhang, Lining Sun. Nano - indentation and nano - scratch of flexible intraocular lens material at the molecular scale. Acta Mechanica Sinica, 2023, 39(1): 122331.
[25] Jun Zhao, YongChao Xiang, Cheng Fan*. A new method for polishing the inner wall of a circular tube with a soft abrasive rotating jet. Powder Technology, 2022(398):117068.
[26] Qian Wang#, Cheng Fan#, Yuecheng Gui, Lei Zhang, Junqiu Zhang, Lining Sun, Kejun Wang, Zhiwu Han. Engineered Mechano - sensors inspired by Biological Mechano - sensilla. Advanced Materials Technologies. 2021, 2100352.
[27] Cheng Fan, Geok Soon Hong, Ji Zhao, Yoke San Wong, Lei Zhang, Jun Zhao. Integral sliding mode control of a pneumatic force servo for the polishing process. Precision Engineering, 2019, 55:154 - 170.
[28] Cheng Fan, Ji Zhao, Lei Zhang, Yoke San Wong, Geok Soon Hong, Wansong Zhou. Modeling and analysis of the material removal profile for free abrasive polishing with sub - aperture pad [J]. Journal of Materials Processing Technology, 2014, 214(2): 285 - 294.
专利(部分):
[1] 樊成,陈国栋,龚勋等.一种气囊抛光工具、系统和方法.申请号:201410669176.6, 授权公告日:2016.10.10(发明专利)
[2] 樊成,张雷,赵启智,陆耀. 使用气囊抛光处理非球面的路径生成方法:中国,ZL 2018 1 14211942.7[P]. 2019-11-29. (发明专利)
[3] 樊成,张雷,薛宇程. 一种利用电流变效应抛光人工晶状体的装置及方法. 申请号:202010123479.3. 申请日:2020年2月27日. (发明专利)
[4] 韩艳君,张雷,樊成,安东尼布康,朱吴乐. 浸没式气射流驱动抛光设备及抛光方法. 申请号:202010119034.8. 申请日:2020年2月26日. (发明专利)
[5] 樊成,张雷,缪宇杰,归悦承. 精密磨床自动上下料装置及上下料方法.申请号:2020109085570 申请日:2020/9/2. (发明专利)
[6] 樊成,张雷,薛曹阳,丁晨,王可军,王倩. 一种微型刀具的刃磨工艺. 申请号:202011211479.0. 申请日:2020/11/4. (发明专利)
[7] 樊成,张雷.数控铣刀端面修磨装置及修磨方法.专利号:ZL 202110314359.6.授权公告日:2022年7月8日 (发明专利)
[8] 樊成,张雷,薛曹阳. 一种微型刀具的刃磨方法. 专利号:ZL202210895510.4. 专利申请日:2022年7月28日,授权公告日:2022年11月22日.
每年招收2-3名研究生和若干名本科生,欢迎对工业机器人和智能装备感兴趣的研究生和本科生加入课题组。
教育背景:
2005年9月-2009年7月,吉林大学,机械设计制造及其自动化,学士
2009年9月-2014年7月,吉林大学,机械制造及其自动化,博士研究生
2012年8月-2014年3月,新加坡国立大学,机器人控制实验室,联合培养博士
研究工作经历:
2025年1月-至今,苏州大学未来科学与工程学院,教授
2023年7月-2024年12月,苏州大学机电工程学院,教授
2023年7月-至今,苏州大学机器人与微系统研究中心,教授
2017年7月-2023年6月,苏州大学机电工程学院,机器人与微系统研究中心,副教授(首批苏大优秀青年学者)
2014年8月-2017年6月,苏州大学机电工程学院,机器人与微系统研究中心,讲师
2014年10月-2017年9月,苏州大学光学精密工程博士后流动站,博士后
高精度复杂曲面构件广泛应用于光学工程、航空航天、国防和高端医疗器械等领域,直接关系国民经济发展和国防安全。随着复杂曲面构件的进一步轻量化、精密化、集成化的发展要求,对超精密制造新工艺、新技术和新装备的需求越来越迫切。此类构件要求的表面质量、尺寸精度、面形精度等已经超过机床所能达到的精度极限,无法单纯依靠机床定位精度来保证此类构件的高精度和高性能。
以光学工程、航空航天和高端医疗器械等领域的复杂曲面构件的精密高性能制造需求为牵引,在复杂曲面可控柔性抛光领域,围绕多物理场可控柔性抛光新原理、柔性抛光面形精度调控新策略、复杂曲面高性能可控柔性磨抛新装备三个方面持续开展研究。
具体研究兴趣包括:
主要研究方向包括:复杂曲面高效高精度可控柔性抛光方法;多物理场辅助可控柔性抛光工艺及调控;光学曲面全频域面形误差迭代收敛策略;硬脆材料的多尺度去除机理及损伤抑制;机器人化的柔顺性抛光力控技术及装备
在研项目:
(1)国家自然科学基金(面上项目):低温/电场复合作用下折柔性人工晶状体的流变液抛光机理及调控方法研究(51975392)项目负责人
(2)江苏省基础研究计划(面上项目):柔性透镜温频耦合柔性超精密抛光关键技术研究,(BK20221361),项目负责人
(3)“高性能制造技术与重大装备”重点专项(青年科学家项目)硬脆薄壁异形构件柔性高性能制造技术研究--“柔顺性高性能制造关键技术与工艺”合作单位负责人
(4)江苏省基础研究计划(自然科学基金): 基于等离子体注入的高精度SiC曲面高效无损伤抛光机理研究(BK20150330)项目负责人
(5)国家自然科学基金(青年基金): SiC曲面等离子改性/固着磨料随形抛光方法研究(51505312)项目负责人
(6)中国博士后第57批面上资助:高精度SiC曲面等离子改性/固着磨料随形抛光新技术(2015M571800)项目负责人
(7)苏州大学-辰轩光电智能制造协同创新中心,横向课题,200万,项目负责人
(8)国家自然科学基金(青年基金): 面向微结构表面超精密加工的纳米驱动、感知一体化智能进给单元集成设计与调控方法,2016.01-2018.12,项目参与人
(9)国家自然科学基金面上项目:弱钝化薄膜设计及碱性下铝低压力平坦化材料高效去除机制,2018.01-2021.12,项目参与人
(10)国家自然科学基金面上项目:基于人臂运动特性的柔性双仿人臂点位约束作业规划与关节刚度控制,2017.01-2020.12,项目参与人
未来科学与工程学院/机器人与微系统研究中心-智能精密制造组
主讲课程包括:
(1)《机械工程专业英语》
(2)《工业机器人》
(3)《自动检测技术》
(4)《控制工程基础》
指导学生获奖:
[1] 2021年全国大学生智能精密装配邀请赛(微细穿孔)樊成,卢磊,孙立宁。主办单位:中国机械工业学会举办
[2] 2021年全国大学生智能精密装配邀请赛(导轨精密装配)卢磊,樊成,孙立宁。主办单位:中国机械工业学会举办
[3] 2021年全国大学生智能精密装配邀请赛(综合奖)卢磊,樊成,孙立宁。主办单位:中国机械工业学会举办
[4] 指导本科生课外学术科研竞赛1项(“二十二批课外学术基金”重大项目)
[5] 苏州大学“天宫杯”(缪宇杰、张云飞、赵巧羽、傅思捷、魏千) (特等奖)
代表作:
[1] Zhibin Yu, Zhenyu Zhang*, Zinuo Zeng, Cheng Fan*, Yang Gu, Chunjin Shi*, Hongxiu Zhou*, Fanning Meng, Junyuan Feng. Atomic surface of diamond induced by novel green photocatalytic chemical mechanical polishing with high material removal rate. International Journal of Extreme Manufacturing. 2025, 7: 025102. (IF=21.3)
[2] Jun Zhao*, Wenbing Wang, Xianwei Qiu, Zixuan Wang*, Cheng Fan*. Material removal profile model simulations and experiments on the non - contact shear thickening polishing of K9 glass. Journal of Manufacturing Processes. 2025, 134: 435 - 451.
[3] Cheng Fan, Xue Qi, Senhao Xie, Binbin Meng, Fusheng Liang, Zhao Wang, Jun Zhao, Tao Chen, Wule Zhu, Xiaofei Yang. Material Removal Prediction and Abrasive Swarm Performance in Electrorheological Polishing of Zirconium - based Amorphous Alloy with Multi - layer Electrodes. Tribology International, 2025, 204: 110508. 一区TOP
[4] Zhibin Yu, Zhenghao Jia, Wei Liu*, Zhenyu Zhang*, Feng Zhao, Cheng Fan*, Hansheng Zhang, Yiqiang Lyv, Dongdong Liu. Facet - Dependent oxidative fabrication of diamond determined by operando scanning electron microscopy. Nano Letters, 2025, 25, 5391−5397.
[5] Cheng Fan, Reng Zhang, Jianfa Bu, Zhao Wang, Fusheng Liang, Tao Chen, Lei Zhang, Wei Ji, Zhenyu Zhang, Xuan Li, Marian Wiercigroch*, Jun Zhao*,Yanjun Han. Modelling of submerged air jet polishing process. International Journal of Mechanical Sciences. 294 (2025) 110246. (IF=9.4)
[6] Zhao Wang, Junfei Xu Yue Yang*, Zhi Han, Yinghao Li, Linyao Wu, Fusheng Liang*, Cheng Fan*. Surface profile modelling of inclined - axis polishing based on the microscopic material removal behaviour of abrasive particles. Tribology International, 209 (2025) 110738.
[7] Feng Zhao, Zhenyu Zhang*, Hongxiu Zhou*, Leilei Chen*, Kuo Hai, Liwei Wu, Jiahao Yu, Zefang Zhang, Cheng Fan*. Unprecedented developed composite polishing system to achieve atomic surface integrating rough and fine polishing using a novel hyper - conjugated pad through controlling the temperature of a proposed green slurry. Advanced Composites and Hybrid Materials, 2025, 8: 234. (IF=21.8)
[8] Binbin Meng, Zhi Han, Fusheng Liang, Cheng Fan*. Mechanism of the influence of vibration dimensions on the removal behavior of SiC ceramics at the nanoscale: convection impact effect and chip separation. Surfaces and Interfaces, 2025, 72:107077.
[9] Cheng Fan, Zhi Han, Congyu Zha, Gaopeng Sun, Wenbin Wang, Junfei Xu, Feng Zhao, Fusheng Liang, Zhao Wang. A new compliant polishing method using 3D - printed elastic polishing tool with TPMS structure. Journal of Manufacturing Processes, 2025, 153(15): 788 - 804
[10] Zhao Wang, Xiaowen Rong, Haoran Zhao, Yue Yang*, Fusheng Liang*, Cheng Fan*. Modelling of abrasive particle distribution for pre - mixed abrasive water jet peening surface.CIRP Journal of Manufacturing Science and Technology, 2025, 63: 135 - 155.
[11] Zhao Wang, Zixuan Wang, Yingdong Liang, Fanwei Meng, Zhijie Cui, Tao Chen, Yue Yang*, Cheng Fan*, Tianbiao Yu, Ji Zhao. Modelling of polyurethane polishing pad surface topography and fixed - point polished surface profile. Tribology International, 2024, 195, 109646.
[12] Zirui Wang, Qingyu Yao, Ping Sun, Wang Yongguang*, Cheng Fan*. Friction properties and mechanism of aluminum sheets under an eco - friendly CMCS lubrication condition. Tribology Letters, 2024, 72: 27.
[13] Cheng Fan, Wei Jiang, Congyu Zha, Zhao Wang, Tao Chen, Fusheng Liang. A new end edge repairing method for flat end mills on a four - axis machine tool using an irregular grinding wheel. Journal of Manufacturing Processes, 2024, 112: 313 - 328.
[14] Cheng Fan, Caoyang Xue, Jun Zhao, Wei Jiang, Wenge Han, Lei Zhang, Lining Sun. Process planning and contour - based error compensation for precision grinding of the miniature scalpel. Advances in manufacturing. 2024, 12 (1): 108 - 123.
[15] Jianwei Ji, Cheng Fan*, Binbin Meng*. Optimizing machinability and minimizing dislocation slip in hexagonal silicon carbide: The role of off - axis angle and processing surface type. Journal of Manufacturing Processes. 2024, 132, 26: 93 - 104.
[16] Cheng Fan, Xingfeng Wang, Kaixuan Liu, Yigang Chen, Fusheng Liang, Zhao Wang, Jun Zhao. Material removal mechanism in and experiments of electrorheological polishing of foldable intraocular lenses at low temperatures. Journal of Manufacturing Processes. 2023, 101: 1032 - 1045.
[17] Guang Xia, Zirui Wang, Qingyu Yao, Ping Sun, Huaijun Guan, Yongguang Wang*, Cheng Fan*, Da Bian, Dong Zhao, Yongwu Zhao. Modeling of material removal rate considering the chemical mechanical effects of lubricant, oxidant, and abrasive particles for aluminum chemical mechanical polishing at low pressure. Wear, 2023, 530 - 531, 205023.
[18] Zhao Wang, Zhelun Ma, Tao Chen*, Cheng Fan*, Tianbiao Yu, Ji Zhao. Experimental investigation into the effect of process parameters on the Inconel 718 surface integrity for abrasive waterjet peening. Surface & Coatings Technology, 2023, 454, 129186.
[19] Cheng Fan, Kaixuan Liu, Yongguang Wang, Lei Zhang, Lining Sun. Nano - indentation and nano - scratch of flexible intraocular lens material at the molecular scale. Acta Mechanica Sinica, 2023, 39(1): 122331.
[20] Yang Li, Fusheng Liang, Lei Lu, Cheng Fan*.Improved time - optimal B - spline feedrate scheduling for NURBS tool paths in CNC machining. Advances in Manufacturing. 2023, 11 (1): 111 - 129.
[21] Lei Zhang, Chen Ding, Zhao Wang, Cheng Fan*. Multiphase flow field analysis and experimental study of pulsating air jet polishing. Journal of Manufacturing Science and Engineering - Transactions of the ASME. 2022, 144(12): 121014.
[22] Lei Zhang, Chen Ding, Yanjun Han, Zhirui Zhang, Cheng Fan*. Investigation into a novel pulsating cavitation air jet polishing method for Ti - 6Al - 4V alloy. Tribology International. 2022, 175, 107837.
[23] Lei Lu, Lei Zhang, Cheng Fan*, Hao Wang*. High - order joint - smooth trajectory planning method considering tool - orientation constraints and singularity avoidance for robot surface machining. Journal of Manufacturing Processes. 2022, 80, 789 - 804.
[24] Cheng Fan, Kaixuan Liu, Yongguang Wang, Lei Zhang, Lining Sun. Nano - indentation and nano - scratch of flexible intraocular lens material at the molecular scale. Acta Mechanica Sinica, 2023, 39(1): 122331.
[25] Jun Zhao, YongChao Xiang, Cheng Fan*. A new method for polishing the inner wall of a circular tube with a soft abrasive rotating jet. Powder Technology, 2022(398):117068.
[26] Qian Wang#, Cheng Fan#, Yuecheng Gui, Lei Zhang, Junqiu Zhang, Lining Sun, Kejun Wang, Zhiwu Han. Engineered Mechano - sensors inspired by Biological Mechano - sensilla. Advanced Materials Technologies. 2021, 2100352.
[27] Cheng Fan, Geok Soon Hong, Ji Zhao, Yoke San Wong, Lei Zhang, Jun Zhao. Integral sliding mode control of a pneumatic force servo for the polishing process. Precision Engineering, 2019, 55:154 - 170.
[28] Cheng Fan, Ji Zhao, Lei Zhang, Yoke San Wong, Geok Soon Hong, Wansong Zhou. Modeling and analysis of the material removal profile for free abrasive polishing with sub - aperture pad [J]. Journal of Materials Processing Technology, 2014, 214(2): 285 - 294.
专利(部分):
[1] 樊成,陈国栋,龚勋等.一种气囊抛光工具、系统和方法.申请号:201410669176.6, 授权公告日:2016.10.10(发明专利)
[2] 樊成,张雷,赵启智,陆耀. 使用气囊抛光处理非球面的路径生成方法:中国,ZL 2018 1 14211942.7[P]. 2019-11-29. (发明专利)
[3] 樊成,张雷,薛宇程. 一种利用电流变效应抛光人工晶状体的装置及方法. 申请号:202010123479.3. 申请日:2020年2月27日. (发明专利)
[4] 韩艳君,张雷,樊成,安东尼布康,朱吴乐. 浸没式气射流驱动抛光设备及抛光方法. 申请号:202010119034.8. 申请日:2020年2月26日. (发明专利)
[5] 樊成,张雷,缪宇杰,归悦承. 精密磨床自动上下料装置及上下料方法.申请号:2020109085570 申请日:2020/9/2. (发明专利)
[6] 樊成,张雷,薛曹阳,丁晨,王可军,王倩. 一种微型刀具的刃磨工艺. 申请号:202011211479.0. 申请日:2020/11/4. (发明专利)
[7] 樊成,张雷.数控铣刀端面修磨装置及修磨方法.专利号:ZL 202110314359.6.授权公告日:2022年7月8日 (发明专利)
[8] 樊成,张雷,薛曹阳. 一种微型刀具的刃磨方法. 专利号:ZL202210895510.4. 专利申请日:2022年7月28日,授权公告日:2022年11月22日.
每年招收2-3名研究生和若干名本科生,欢迎对工业机器人和智能装备感兴趣的研究生和本科生加入课题组。
