任莹晖

教授

基本情况

姓名:任莹晖

系别:机械制造工程系

职称/职务:教授博士生导师硕士生导师,致公党湖南大学基层委员会副主委

招生意向:

欢迎来自机械工程、工业工程、力学等相关专业,数学和力学基础好、英文读写能力强、动手能力强、勤奋踏实、热爱生活的同学们加入我们!本团队面向国家重大需求和科学前沿,与国内多家大型国企、上市公司及研究所展开密切合作,科研项目和经费充足,毕业学生就业面广、行业内评价高。与海外知名高校学者保持密切的学术合作关系,可推荐报考的优秀学生赴海外进行短期、长期学术交流、联合培养及攻读博士学位。

E-mail:rebecca_ryh@hnu.edu.cn

教育及工作经历

2001.06,湖南大学,机械设计制造及其自动化专业,学士学位;

2009.05,湖南大学,机械工程工学博士学位;

2009.07-至今,湖南大学机械与运载工程学院,专任教师;

2013.01—2014.12,湖南大学机械与运载工程学院,机械制造工程系,副主任;

科研项目

纵向主持:

[1]湖南省自然科学基金项目,(2013.01-2015.12)。

[2]国家自然科学基金面上项目,批准号:51675170,(2017.01-2020.12,65万)。

[3]国家自然科学基金面上项目,批准号:52075161,(2021.01-2024.12,58万)。

[4]国家重点研发计划(网络协同制造和智能工厂)项目课题,(2020YFB1713002,2020.10-2023.10,90万)

[5]湖南省十大技术攻关项目课题(2023GK1071,2023.01-2025.12,265万)

[6]国家科技重大专项项目课题,(2024.10-2027.09,90万)

[7]国家自然科学基金联合基金重点项目,批准号:U25B20158,(2026.01-2029.12,260万)

企业委托:

[1]重点领域央企委托项目,近10项(2009年~至今)。

学术成果

发表论文

[1]邓朝晖,张璧,周志雄,任莹晖,刘建.陶瓷磨削的表面/亚表面损伤.湖南大学学报,2002,29(5):61-71

[2]Ren Yinghui,Zhou Zhixiong,Deng Zhaohui.Microgrinding of Nanostructured Carbide Coatings:Ground Surface and Subsurface Damage Observations.Key Engineering Materials,Advances in Grinding and Abrasive Technology XIII,2006,304-305:276-280

[3]Ren Yinghui,Zhang Bi,Zhou Zhixiong.Grinding Force Prediction for Tungsten Carbides Various Grain Size.Nanotechnology and Precision Engineering,2008,6(6):415-423

[4]周志雄,毛聪,周德旺,任莹晖.平面磨削温度及其对表面质量影响的实验研究.中国机械工程,2008,19(4):980-984.

[5]Ren Yinghui,Zhang Bi,Zhou Zhixiong,Specific Energy in Grinding of Tungsten Carbides Various Grain Sizes,Annals of the CIRP,58(1):299-302,2009.

[6]任莹晖,张璧,周志雄,纳米结构WC-Co精密磨削表面完整性研究,中国机械工程,2009,20(8):896-901.

[7]周志雄,周秦源,任莹晖,复杂曲面加工技术的研究现状与发展趋势,机械工程学报,2010,46(17):105-113.

[8]Mao Cong,Zhou Zhixiong,Ren Yinghui,Zhang Bi,Analysis and FEM simulation of temperature field in wet surface grinding.Materials and Manufacturing Processes,Vol.25,No.6,399-406,2010.

[9]李伟,周志雄,宋铁军,任莹晖,肖航,微机床主轴用微涡轮设计及其气动性能研究,湖南大学学报,2012,39(8):34-38.

[10]Huang Xiangmin,Zhou Zhixiong,Ren Yinghui.Experimental research material characteristics effect on white layers formation in grinding of hardened steel.The International Journal of Advanced Manufacturing Technology.2013,66(9):1555–1561.

[11]Mao Cong*,Ren Yinghui,Gan Hangyu,Zhang Mingjun,Zhang Jian,Tang Kun,Microstructure and mechanical properties of cBN-WC-Co composites used for cutting tools,International Journal of Advanced Manufacturing technology,2014,76(9-12):2043-2049.

[12]Huang xiangming*,Ren Yinghui,Zhou Zhixiong,Xiao Hang,Experimental study on white layers in high-speed grinding of AlSi52100 hardened steel,Journal of Mechanical Science and technology,29(3):1257-1263,2015.

[13]任莹晖*,纪会敏,杜勇,周志雄,黄向明.切削刀具综合管理系统的数据采集和存储设计研究.计算机应用研究.2016,33(10):3031-3035.

[14]Luo Yuanqiang,Ren Yinghui*,Zhou Zhixiong,Huang Xiangming,Song Tiejun,Prediction of single-tooth sawing force based on tooth profile parameters,International Journal of Advanced Manufacturing technology,2016,86(1-4):641-650.

[15]Huang Xiangming,Ren Yinghui*,Zheng Bo,Deng Zhaohui,Zhou Zhixiong,Experiment research on grind-hardening of AISI5140 steel based on thermal compensation[J].Journal of Mechanical Science and Technology,2016,30(8):3819-3827.

[16]李伟,周志雄,尹韶辉,任莹晖.微细磨削技术及微磨床设备研究现状分析与探讨.机械工程学报,2016,52(17):10-19.

[17]任莹晖*,罗源嫱,欧阳武,周志雄,宋铁军.带锯锯切力数值仿真及工艺实验研究.工具技术,2017,51(6):15-19.

[18]任莹晖*,谢桂枝,纪会敏,左小陈,陈康.平头铣刀关键工序磨削参数的优化.工具技术,2017,51(2):56-59.

[19]宿彪,黄向明,任莹晖,王伏林,肖和,郑波.基于蚁群算法的工程机械再制造优化选配方法研究.机械工程学报,2017,53(5):60-68.

[20]黄向明,蒋为,任莹晖,郑波.MQL参数对40Cr磨削强化层表面质量影响的试验研究[J].热加工工艺,2017,46(20):165-169.

[21]黄向明,李通,任莹晖,吴为,何志坚.基于分段变磨削力的磨削强化层仿真[J].中国机械工程,2017(21):56-60.

[22]Huang Xiangming,Ren Yinghui*,Jiang Wei,He Zhijian,Deng Zhaohui,Investigation on grind-hardening annealed AISI5140 steel with minimal quantity lubrication[J].The International Journal of Advanced Manufacturing Technology,2017,89(1-4):1069-1077.

[23]黄向明,吴为,任莹晖,李通.预加热磨削强化均匀性试验研究[J].湖南大学学报:自然科学版,2018,45(10):24-29.

[24]任莹晖,黄向明*,马忠凯,周志雄.基于信息熵的物料配送时间节点预测方法[J].中国机械工程,2018,29(22):2725-2732.

[25]杨军,李志鹏,李伟,任莹晖,周志雄.基于不同单颗磨粒模型的微细磨削力研究[J].湖南大学学报:自然科学版,2018(8):54-62.

[26]Huang Xiangming,Ren Yinghui,Li Tong,Zhou Zhixiong,Zhang Gaofeng,Influence of minimum quantity lubrication parameters on grind-hardening process[J].Materials and Manufacturing Processes,2018,33(1):69-76.

[27]Li Wei,Li Zhipeng,Ren Yinghui,Huang Xiangming,Error analysis of high-speed precision micro-spindle equipped with micro-tool in mechanical micro-grinding[J].The International Journal of Advanced Manufacturing Technology,2018,97(1-4):599-609.

[28]Xiao Hang,Li Wei,Zhou Zhixiong,Huang Xiangming,Ren Yinghui,Performance analysis of aerostatic journal micro-bearing and its application to high-speed precision micro-spindles[J].Tribology International,2018(120):476-490.

[29]Huang Xiangming,Ren Yinghui*,Wu Wei,Li Tong,Research on grind-hardening layer and residual stresses based on variable grinding forces[J].The International Journal of Advanced Manufacturing Technology,2019,103(1-4):1045-1055.

[30]Li Wei,Liu Mingjia,Ren Yinghui,Chen Qidi,A high-speed precision micro-spindle use for mechanical micro-machining[J].The International Journal of Advanced Manufacturing Technology,2019,102(9-12):3197-3211.

[31]Ren Yinghui*,Li Chenfang,Li Wei,Li Maojun,Liu Hui,Study on micro-grinding quality in micro-grinding tool for single crystal silicon[J].Journal of Manufacturing Processes,2019(42):246-256.

[32]Qidi Chen,Wei Li*,Yinghui Ren,Zhixiong Zhou.3D chatter stability of high-speed micromilling by considering nonlinear cutting coefficients,and process damping.Journal of Manufacturing Processes,2020(57):552-565.

[33]Li Wei,Ren Yinghui*,Li Chenfang,Li Zhipeng,Li Maojun,Investigation of machining and wear performance of various diamond micro-grinding tools.The International Journal of Advanced Manufacturing Technology,2020,106(3-4):921-935.

[34]Yinghui Ren*,Kexin Li,Wei Li,Xu Han,and Xiaoman Liu,Research on a UV-assisted chemical modification strategy for monocrystalline silicon.Mechanical Sciences[J],2021,12,133–141.

[35]Yinghui Ren,Sanfeng Yang,Xiangming Huang*,Yang Ming,Wei Li.Research on the rheological characteristic of magnetorheological shear thickening fluid for polishing process[J].The International Journal of Advanced Manufacturing Technology,2021,117:413-423.

[36]任莹晖*,周家恒,李伟,周志雄,李陈方.化学机械磨削技术研究现状与展望[J].中国机械工程,2021,32(18):2143-2152.

[37]王成勇,陈志桦,陈华伟,宋清华,任莹晖,隋建波,舒利明,陈滨,郑李娟.生物骨材料切除理论研究综述.机械工程学报,2021,57(11):2-32.

[38]Yuanqiang Luo,Yinghui Ren*,Yang Shu,Cong Mao,Zhixiong Zhou,Zhuming Bi.The cutting behavior of cortical bone in different bone osten cutting angles and depths of cut[J].Chinese Journal of Mechanical Engineering,2022,35:91-103.

[39]张学学,任莹晖*,杨伟程,李伟,于康宁.单晶硅微细磨削非稳态特征声发射信号感知研究.机械工程学报,2022,58(15):121-133.

[40]Yinghui Ren,Siwei Wen*.Micro-mechanism for nanocrystallization of laminated Fe-based metallic glass foil side-milled[J].Intermetallics,2022,150:107684.

[41]Yinghui REN*,Kexin LI,Wei LI,Xiangming HUANG,Xiaoman LIU,Genyu CHEN,Toshiro DOI.A hybrid chemical modification strategy for monocrystalline silicon micro-grinding:Experimental investigation and synergistic mechanism.Chinese Journal of Aeronautics,2023,36(7):147-159

[42]马新一,匡增彧,卓晓军,任莹晖*.考虑不确定性条件的退役产品拆解柔性调度,工业工程,2023,26(4):144-153

[43]Fengrong Luo,Yinghui Ren*,Genyu Chen,Wei Zhou,Bang Hu,Yanyi Wang,Mingquan Li.Effect of surface topography of fiber laser dressed resin-bond diamond wheel on its grinding performance.The International Journal of Advanced Manufacturing Technology(2023)127:3427–3440

[44]Chengxi She,Kexin Li,Yinghui Ren*,Wei Li,Kun Shao.Tool wear prediction method based on bidirectional long short‑term memory neural network of single crystal silicon micro‑grinding.The International Journal of Advanced Manufacturing Technology

[45]匡增彧,谢晖,任莹晖,石珉滈.退役产品拆解车间逆向生产与物流集成调度优化[J].湖南大学学报(自然科学版),2024,51(4):161-168

[46]任莹晖*,万家伟,匡增彧,谢晖.考虑拆解故障的退役产品人机混流线插单调度[J].湖南大学学报(自然科学版),2024,51(4):153-160

[47]匡增彧,谢晖,任莹晖*,卓晓军,刘洋,易峦.退役产品性能损耗分级评价的拆解车间调度节能优化研究,机械工程学报,2024

[48]田苗,于康宁,任莹晖*,佘程熙,易峦.基于GA-BP神经网络的微磨具磨损预测研究.金刚石与磨料磨具工程,2024,44(261):364-374.

[49]杨三锋,黄向明,明阳,任莹晖.新型磁流变-剪切增稠阻尼器的力学模型及试验研究[J].机械工程学报,2023,第59卷(16):418-426

[50]黄向明,蔡云辉,任莹晖,何洪,陈永福.考虑晶格缺陷的单晶4H-碳化硅纳米划擦过程分子动力学仿真研究[J].湖南大学学报(自然科学版),2025,第52卷(6):97-105

[51]张超,任莹晖*,于晓琳,李茂君,余承阳,杜新亮.基于细观仿真建模的CFRP纵-扭超声铣削材料去除机理研究[J].中国机械工程,2025,第36卷(4):760-769,779

[52]李可欣,任莹晖*,李伟,黄向明,陈根余.多能场辅助微细磨削技术研究进展[J].机械工程学报,2025,第61卷(13):360-385

发明专利

[1]周志雄,李伟,林丞,周文理,任莹晖.超高速超精密气动微主轴单元(发明专利),2011.11,中国,ZL 201010116981.8.

[2]李伟,任莹晖,周文理,周志雄,肖航.一种微细机械加工用微主轴(发明专利),2016.11,中国,ZL201611082459.6.

[3]黄向明,任莹晖,周志雄,刘森,蒋为.一种基于预加热可控磨削强化方法(发明专利),2015.2,中国,ZL201310594582.6

[4]李伟,任莹晖,周志雄.一种化学机械-机械化学协同微细磨削加工方法与复合磨粒型微小磨具(发明专利),2020.07.28,中国,ZL 201711050786.8

[5]任莹晖,李伟,李可欣,刘晓曼,周志雄.一种光催化高能场辅助化学机械复合微细磨削方法(发明专利),2021.7.09,中国,ZL 201911132515.6

奖励与荣誉

[1]任莹晖,张璧,周志雄,Specific energy in grinding of tungstencarbides of various grain sizes,湖南省科学技术厅,优秀学术论文,二等奖,2012.

[2]2013年度湖南大学优秀毕业实习指导教师;

[3]2013年第9届湖南大学“长丰奖励基金“优秀教师奖;

[4]2014年湖南大学讲课比赛一等奖;

[5]超细晶粒整体硬质合金纳米涂层系列精密铣刀,湖南省人民政府,湖南省科学技术进步奖,一等奖,排名第六,2014;

[6]高硬难加工材料磨削关键技术及其应用,湖南省人民政府,湖南省科学技术进步奖,三等奖,排名第四,2015。

[7]全自动智能双平面磨削生产线,长沙市人民政府,长沙市科学技术进步奖,二等奖,排名第五,2015。

[8]2017年度中国致公党湖南省委员会优秀党员

[9]2019年《机械工程学报》优秀论文奖,“基于蚁群算法的工程机械再制造优化选配方法研究”,2017年第5期

[10]第14届设计与制造前沿国际会议(ICFDM 2020,Xi’an)优秀论文奖,“Research on UV-assisted Chemical Modification strategy for Monocrystalline Silicon”.

[11]第21届全国磨粒技术会议(CCAT 2021,大连)优秀论文奖,“单晶硅微细磨削非稳态特征声发射信号感知研究”;

[12]高硬难加工材料微量纳米流体射流润滑磨削机理研究,湖南省人民政府,湖南省自然科学奖,二等奖,排名第五,2020;

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