王有良

王有良,男,1986年生,工学博士,副教授,硕士研究生导师。长期从事多场辅助超精密加工、磁性功能材料制备、智能制造等等方面具有深厚的研究基础。主要研究方向有磁流变超精密抛光、磁场辅助电化学抛光、磁性功能材料、人工智能等。主持国家自然科学基金1项,甘肃省自然科学基金2项、甘肃省高等学校创新能力提升项目1项,兰州市青年人才项目1项,授权国家发明专利授权3项,在国内外知名期刊如International Journal of Mechanical Sciences、Precision Engineering、光学精密工程、表面技术等发表论文50余篇。其成果获得日本金型技术振兴财团及三丰科学技术振兴财团国际交流奖学金,2015年日本精密工学会东北支部青年研究奖,第12届中日超精密加工国际会议的最佳研究奖,第18届中日超精密加工国际会议的最优发表奖,担任2024年(第四届)全国超声加工技术研讨会分会场主席,担任《Precision Engineering》、《Wear》、《Materials Science in Semiconductor Processing》等期刊审稿人。
个人电子邮箱:wangyouliang20@163.com;wangyouliang20@lut.edu.cn.
研究方向:
超精密加工工艺与装备、磁性纳米功能材料、智能制造新技术等。
获奖:甘肃省机械工程学会科学技术二等奖、甘肃省冶金有色工业协会科技进步奖一等奖
教育与工作经历:
2005年/9月-2009年/7月 工学学士 河南科技大学 材料成型及控制工程
2009年/9月-2012年/7月 工学硕士 兰州理工大学 材料加工工程
2013年/4月-2016年/9月 工学博士 Akita Prefectural University (日本) 综合系统科学
2016年/10月-2019年/12月 兰州理工大学 机电工程学院 讲师
2018年/9月-2019年/6月 东南大学 访问学者
2019年/9月-2020年/1月 南方科技大学 访问学者
2020年/1月-至今 兰州理工大学 机电工程学院 副教授
教学工作:
本科生:《工程材料及成型技术》《智能制造导论》《智能制造工艺》《制造技术基础》
研究生:《微纳加工理论及技术》
主持与参与的科研项目:
1. 国家自然科学基金,地区项目,52265056,多孔羰基铁粉结构调控及其在钛合金管内壁的抛光机理。2023.01-2026.12,33万,在研。
2. 兰州市青年人才项目(2023-QN-38),镍渣结构调控及在磁流体超精密抛光中作用机理,2023-2025年,5万元,主持,资助期满。
3. 甘肃省科技基金计划项目(21JR7RA228)基于介电泳与磁流变复合效应下菲涅尔透镜模具的超精密加工机理研究,2021.09.08~2023.09.08,6万元,主持,结题。
4. 甘肃省青年科技基金计划项目(17JR5RA118),磁场辅助复合流体对微细沟槽的材料去除模型及机理研究,2017/09-2019/12,3万,主持,结题。
5. 甘肃省高等学校创新能力提升项目(2020A-025),基于“超声-旋转磁场”复合场的合金管内壁加工机理和疲劳寿命研究,2020/01-2021/12,2.5万元,结题,主持。
6. 兰州理工大学红柳优秀青年人才支持计划(07/062004),2020/06-2022/06,24万元,主持,结题。
7. 国家自然科学基金委员会,地区项目,61962035,自由曲面数控加工规划的逆向求解及其在数控精加工中的应用,2020/01-2023/12,41万元,结题,参与。
8. 国家重点研发项目,2020IM030400,双创升级版创新创业“深度孵化”方法研究与应用示范,2020/12-2023/10,135万,结题,参与。
9. 舞台机械控制系统更新改造(HZ2025C50200004),20万,主持,结题。
学术论文列表:
[1] 王有良(1-6),郭毅,段小超,等。多孔羰基铁粉对磁性复合流体抛光的影响,表面技术,2025,55(1),3599-11.(封面文章)
[2] 尹新城, 周宇航, 王有良(3-4), 等. BK7光学玻璃化学机械抛光机理研究[J]. 表面技术. 2026, 55(1): 43-57.
[3] Yin Xincheng, Zhou Yuhang, Wang Youliang*, et al. Study on the mechanism of chemical mechanical polishing for BK7 optical glass [J]. Physica Scripta, 2025,100,125017.
[4] Xue, Yufeng; Zhang, Wentao; Wang, Youliang, et al.(3-7)Inner-surface polishing of capillary tube with magnetic compound fluid slurry,International Journal of Mechanical Sciences,2025,287,109923
[5] Youliang Wang(1-5) , Hua Liu , Zhou Jia , et al. A review of tube inner surface polishing technologies and development[J]. Precision Engineering, 2025, 96, 963-983.
[6] Wang, Y.(1-5), Yu, P., Kang, Y., et al. Double Magnetic Field Assisted Magnetic Compound Fluid Technology for Precision Machining of Microgrooves. Tribology Transactions, 2025,68(3), 657–667.
[7] 王有良(1-4), 于璞垚,高煕淳等,磁性复合流体抛光性能稳定性与使用寿命研究[J]. 光学 精密工程, 2025, 33(12): 1902.
[8] Wang Youliang(1-5), Liu Haiwang, Yin Xincheng, et al. Study on magnetic field-electrochemical composite polishing mechanism of TC4 titanium alloy, Physica Scripta. 2025,100(7),075002
[9] 王有良(1-4), 于璞垚, 尹新城, 等. 镍渣改质及其在磁性复合流体抛光中的应用[J]. 光学精密工程, 2025, 33(01):84-95.
[10] Wang Youliang, Jiang Zhe, Zhang Wenjuan, et al. Ultra-precision Polishing of Outer Surface of Tube Using Magnetic Compound Fluid Wheel[J]. Rare Metal Materials and Engineering, 2025, 54(10):2429~2439.
[11] Youliang Wang(1-6), Puyao Yu, Wenjuan Zhang, et al.; Exploration study of nickel slag/modified slag in the ultra-precision polishing of magnetic compound fluid. AIP Advances 2024; 14 (10): 105217.
[12] Youliang Wang(1-4),Yating Kang, Wenjuan Zhang, et al. Synthesis and Characterization of Fe3O4@SiO2 Core-shell Nanoparticles for Mirror and Efficient Magnetic Compound Fluid Polishing of TC4 Titanium alloy. Surface Topography: Metrology and Properties, 2024 12(3) 035041.
[13] Wang Y(1-6) , Liu H , Yin X ,et al. Study on electrochemical polishing mechanism of TC4 titanium alloy[J]. Physica Scripta,2024 99(8), 085983.
[14] 王有良,张彤,张文娟,等. 磁性复合磨粒制备参数对不锈钢表面研磨质量影响,稀有金属,2025,49(11)1698~1708。
[15] 王有良,张彤,史小峰等,基于环形磁场磁性复合流体的抛光特性,兰州理工大学学报,已录用。
[16] Wang Y , Kang Y , Zhang W , et al. Preparation of Core-Shell Nanoparticles and Their Application in Precision Machining. [J]. Rare Metal Materials and Engineering, 2024,53(12):3348~3357.
[17] 王有良(1-3), 高熙淳, 张文娟. 基于灰色关联分析的PMMA工件磁性复合流体抛光工艺参数优化[J]. 金刚石与磨料磨具工程, 2025, 45(1): 134-142.
[18] 王有良(1-4),高熙淳,张文娟,等. 磁性复合流体抛光过程中水分对抛光性能的影响,光学精密工程,2023,31(24),3559-3569(封面文章)
[19] Wang Youliang(1-3), Liang Bo, Zhang Wenjuan. Ultra-precision Surface Polishing of Gallium Arsenide Wafer Using Magnetic Compound Fluid Slurry[J]. Rare Metal Materials and Engineering,2024,53(2):377~385.
[20] Wang Y*(1-6), Gao X, Gao J, Chen X, Zhang W, Feng M. A Novel Polishing Method for Extending the Service Life of Magnetic Compound Fluid. Lubricants. 2022; 10(11):299.
[21] Gao, Jibo; Chen, Xiujuan; Wang, Youliang*,Fundamental Study on the Effects of Parameters on Polishing Characteristic Using a Novel MCF Polishing Method [J]. Smart Innovation, Systems and Technologies,2021,296:18-26.
[22] 王有良(1-5),史小锋,陈秀娟等.基于双磁场磁性复合流体的抛光性能[J].表面技术,2022,51(11):360-372.
[23] 梁原,王有良,魏泰,等.风力发电机塔筒法兰高强度螺栓疲劳强度分析[J].兰州理工大学学报, 2023, 49(2):65-69.
[24] 俞伟元,张涛,王有良*. 阳极氧化对超声波焊接6063铝合金与PPS的影响[J], 稀有金属材料与工程, 2022, 51(1):241-48.
[25] Wang Youliang#, Jibo Gao, Feng Ming, Zhang Wenjuan, Zhang Xujie and Wu Yongbo*. Experimental study on the polishing of aspheric surfaces on an S-136 mould steel using magnetic compound fluid slurries’, Int. J. Abrasive Technology. 2020,10(3),155-169.
[26] Wang Youliang#(1-4), Zhang Tao, Yu Weiyuan*, Zhang Wenjuan. Review on Joining Technology of Aluminum Alloy and Composites[J]. Rare Metal Materials and Engineering,2021,50(3)753-761.
[27] Xu H , Wang Y , Zhao D ,et al. Based on TRIZ Methodology Design and Preparation of a Robust Skeletal Superhydrophobic Perfluoropolysiloxane and Polyaniline/Epoxy Resin Composite Coating with Outstanding Anti-Corrosion Performance[J].Bulletin of the Chemical Society of Japan, 2021(10):94
[28] Youliang Wang#, Guoyu Yu, Xiujuan Chen*, et al. High Capacity Nano-Sized Carbon Spheres for Lithium-Ion Battery Anode Materials[J]. Polymers, 2019, 11(4).
[29] Youliang Wang#, Yongbo Wu* and Mitsuyoshi Nomura, Fundamental investigation on nano-precision surface finishing of electroless Ni–P-plated STAVAX steel using magnetic compound fluid slurry, Precision Engineering,48(2017)32-44.
[30] Youliang Wang#, Yongbo Wu*, and Mitsuyoshi Nomura, Feasibility study on surface finishing of miniature V-grooves with magnetic compound fluid slurry, Precision Engineering, 2016,45: 67-78.
[31] Youliang Wang#, Yongbo Wu* and Mitsuyoshi Nomura, A novel magnetic field-assisted polishing method using magnetic compound slurry and its performance in mirror surface finishing of miniature V-grooves. AIP Advances, 6(2016)056602-1-6.
[32] Youliang Wang#*, Yongbo Wu, Huiru Guo, Masakazu Fujimoto, Mitsuyoshi Nomura and Kunio Shimada, A New Magnetic Compound Fluid Slurry and its Performance in Magnetic Field-assisted Polishing of Oxygen-free Copper, Journal of Applied Physics, 117(2015) 17D712-1-4.
[33] Youliang Wang#, Yongbo Wu* and Mitsuyoshi Nomura,Nano-precision Polishing of Oxygen-free copper using MCF (Magnetic Compound Fluid) slurry,Advanced Materials Research, 806(2015)455-460.
[34] Wenjuan Zhang, Qiancheng Feng, Bobo Zhang, Youliang Wang*, Yulong Fei, Miao Kou, Zhaoxiong Zhang, Yingying Shen, Xueyan Du, Nitrogen-doped mesoporous carbons bearing Fe3O4 as adsorbent for effective Ag (I) removal. Nano.
[35] Ming Feng, Yongbo Wu*, Youliang Wang, et al. Investigation on the polishing of aspheric surfaces with a doughnut-shaped magnetic compound fluid (MCF) tool using an industrial robot[J]. Precision Engineering, 2020, 61: 182-193.
[36] Ming Feng, Yongbo Wu*, Youliang Wang, et al. “Effect of the components of magnetic compound fluid (MCF) slurry on polishing characteristics in aspheric-surface finishing with the doughnut-shaped MCF tool” Precision Engineering, 2020,35:216-229.
[37] Ming Feng, Youliang Wang, Yongbo Wu*, Polishing investigation on zirconia ceramics using magnetic compound fluid (MCF) slurry, International Journal of Abrasive Technology, 2019, 9: 257-275.
[38] 韦尧兵,张如鹏,刘俭辉,王有良,应力-强度干涉理论在对接焊缝中的应用[J], 兰州理工大学学报,2020,46 (6):168-172
[39] Liu, Jianhui; Pan, Xuemei; Wei, Yaobing; Wang, Youliang, Method for Predicting the Fatigue Life of Geometrically Discontinuous Structures under Combined Bending and Torsion [J]. Acta Mechanica Solida Sinica, 2019, 32(3).
[40] Guoyun Yu, Xiujuan Chen, Ansong Wang, Youliang Wang. Carbon@SnS2 core-shell microspheres for lithium-ion battery anode materials[J]. Ionics, 2018.
[41] Wenjuan Zhang*, BoBo Zhang, XueYan Du*, Youliang Wang, YuLong Fei, YingYing Shen, Synthesis of N-doped magnetic mesoporous carbon composite for adsorption of Ag (I) in aqueous solution, Journal of Nanoscience and Nanotechnology 21.3 (2021): 1462-473.
[42] Wenjuan Zhang, Yulong Fei, Youliang Wang*, Bobo Zhang, Xiaokai Ma, Research progress on the adsorption of heavy metals in industrial wastewater by magnetic polyaniline composites, Materials Reports, 2020, 34(5): 9012-9018.
[43] Bobo Zhang, Wenjuan Zhang*, Xueyan Du, Youliang Wang, Advances in Adsorption of heavy metal ions in wastewater by iron-based magnetic nanomaterial, Journal of Materials Engineering,
[44] Yin X, Wang Y, Liu J, et al. Micro-arc plasma discharge polishing for multi-material parts[C] Journal of Physics: Conference Series. IOP Publishing, 2023, 2578(1): 012012.
[45] Yin X, Wang Y, Liu J, et al. Study on Enhancement Mechanisms in Ultrasonic-Assisted Plasma Electrochemical Oxidation for SiC Single Crystal[J]. Arabian Journal for Science and Engineering, 2023: 1-13.
[46] Xincheng Yin, Youliang Wang, Jianhui Liu, Linfeng Deng, Shujuan Li. Study on material removal mechanism in micro-arc plasma discharge polishing for SUS304 stainless steel [J]. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2025, 47(6): 258.
发明专利列表:
[1] 王有良,基于动态磁场辅助的磁力研磨装置[P].中国专利:ZL202210219999.3. [2022-3-08]. (已授权)
[2] 王有良,刘俭辉,张文娟,马向阳,郎珊珊,王洪申,陈秀娟;一种抛光装置[P].中国专利:ZL 2020 1 0139587.X. [2021-3-5] (已授权)
[3] 王有良,张文娟,陈秀娟,刘俭辉,郎珊珊,李斌,王洪申;一种基于磁性混合流体非球面模具钢高精密抛光的装置[P].中国专利:ZL 2019 1 0826356.3. [2021-5-18] (已授权)
已毕业部分读博学生去向:
23级 于璞垚 西安交通大学 读博
22级 姜 哲 武汉大学 读博
21级 高煕淳 南京理工大学 读博