陈根余

教授

基本情况

性别:男

出生年月:1965年4月

民族:汉

政治面貌:中共党员

最高学历:博士

职称职务:二级教授、博士生导师、硕士生导师、湖南大学岳麓学者领军岗、学科带头人

主要荣誉:享受国务院政府特殊津贴专家,国家科技进步奖第一完成人,国家重点研发专项项目首席科学家,国家科技重大专项和863重点项目主持人

工作单位:机械与运载工程学院

通讯地址:湖南大学机械与运载工程学院,激光研究所邮政编码:410082

联系电话:13509601859

微信:13509601859

E-mail:hdgychen@163.com

Q Q:937749927

教育及工作经历

2009—至今,科技特派员,任大族激光智能装备集团首席科学家、总工程师。

2007—2008,美国康乃狄克大学,公派访问学者1年

2006—至今,激光技术与智能制造装备研究所所长

2003-2006,长沙凤凰激光设备有限公司总经理

2001—2005,湖南大学,机械制造及其自动化专业,博士研究生学习

2001—2002,香港理工大学,合作研究1年

1994—至今,湖南大学机械与运载工程学院,从事教学、科研、管理、新产品开发,历任讲师、副教授、教授(其中2002—2011,湖南大学制造与管理系,支部书记;1996—2002,湖南大学机制教研室,主任)

1999-2001,湖南力钧激光设备有限公司总经理

1987—1991,湖南大学机电工厂,工程师

1991—1994,湖南大学,机械制造及其自动化专业,硕士研究生学习

1983—1987,湖南大学,机械制造及其自动化专业,本科学习

科研项目

目前在研项目:

[1]难加工材料激光精密铣槽与切孔关键技术和装备研究与应用,深圳市重大专项,总的金额7000万元;

[2]超快激光加工气膜孔机理研究及仿真模型建立,横向课题,50万元;

[3]超短脉冲激光五轴振镜旋切加工头研制及应用,广东省重点专项,总的金额5500万元;

[4]高效大尺寸激光选区熔化增材制造及复合工艺与装备,广东省重点专项,总的金额7340万元;

[5]大飞机用碳纤维复合材料激光/机械复合制孔关键技术研究,国家重点实验室开放基金,60万元;

[6]激光制造正前角金刚石磨具与正前角磨削机理研究国家自然科学基金,75.06万元;

[7]超快激光七轴五联动精密加工刀具装备研发与应用广东省重点研发计划,总的金额4960万元;

[8]超硬磨料砂轮数控精密修整技术与装备,国家科技重大专项,总的金额2249万元;

[9]非金属材料超高速光固化增材制造关键技术与装备,广东省重点专项,总的金额4300万元。

学术成果

科研著作

[1]参编:盛晓敏,陈根余等等.先进制造技术[M].北京:机械工业出版社,2000.

[2]参编:机械工程学科发展战略报告(2011-2020).北京:科学出版社.2013

[3]参编:盛晓敏,陈根余等等.超高速磨削技术.北京:机械工业出版社,2012

[4]参编:王德泉,陈艳,陈根余,金湘中.砂轮特性与磨削加工[M].中国标准出版社,2001

[5]万能型砂轮全自动复合修整设备控制软件V1.0,登记号:2018SR680171

[6]基于三维形貌识别的金刚石砂轮激光修锐评价软件V1.0,登记号:2023SR0538170

[7]一种凹形超硬砂轮激光修整数据库软件V1.0,登记号:2023R11L1001368

发表论文

[1]Tao N,Chen G,Fang W,et al.Understanding the bowl-bottom effect in ultra-short pulsed laser drilling of CFRP laminate[J].Composite Structures,2023,305:116498.

[2]Luo F,Ren Y,Chen G,et al.Effect of surface topography of fiber laser dressed resin-bond diamond wheel on its grinding performance[J].The International Journal of Advanced Manufacturing Technology,2023:1-14.

[3]Chen,Genyu;Dai,Longzhou;Li,Mingquan;Yuan,Shangyong.Experimental Research of Coarse-grained Arc Diamond Grinding Wheel Dressed by Laser and Electrical Discharge Compound Dressing[J].Zhongguo Jixie Gongcheng/China Mechanical Engineering,2022,Vol.33(15):1780-1786

[4]Yanyi Wang;Genyu Chen;Fengrong Luo;Wei Zhou.Experimental study on laser dressing of bronze-bonded diamond arc grinding wheel based on self-powered sensor[J].IEEE Sensors Journal,2022,:1

[5]Wei Zhou;Genyu Chen;Mengyang Gao;Yanyi Wang;Yi Wei;Wei Li.Laser machining and compensation truing of small concave-arc bronze-bonded diamond grinding wheels[J].Journal of Manufacturing Processes,2022,Vol.79:815-826

[6]Zhou,Wei;Chen,Genyu;Pan,Huajun;Luo,Fengrong;Wei,Yi;Li,Mingquan.Laser deflection tangential dressing complex-concave surface bronze-bonded diamond wheels[J].International Journal of Advanced Manufacturing Technology,2022,Vol.121:5109-5123

[7]Yi Wei;Genyu Chen;Mingquan Li;Wei Li;Yunlong Zhou;Jianbo Xu;Wei Zhou.High-precision laser powder bed fusion of 18Ni300 maraging steel and its SiC reinforcement composite materials[J].Journal of Manufacturing Processes,2022,Vol.84:750-763

[8]Longzhou Dai;Genyu Chen;Zizhao Shan.Experimental study on silica powder mixed electrical discharge dressing of coarse diamond grinding wheel[J].Journal of Manufacturing Processes,2022,Vol.73:748-756

[9]Wei,Yi;Chen,Genyu;Li,Wei;Zhou,Yunlong;Nie,Zhen;Xu,Jianbo;Zhou,Wei.Micro selective laser melting of SS316L:Single Tracks,Defects,microstructures and Thermal/Mechanical properties[J].Optics and Laser Technology,2022,Vol.145

[10]Wei Zhou;Genyu Chen;Mengyang Gao;Mingquan Li.Laser sharpening evaluation of diamond wheels based on 3D recognition[J].Diamond and Related Materials,2022,:109354

[11]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[J].Chinese Journal of Aeronautics,2022,

[12]Zhou,Wei;Chen,Genyu;Pan,Huajun;Luo,Fengrong;Wei,Yi;Li,Mingquan.Laser precision profiling of small-angle bevel-edge contour grinding wheels[J].Journal of Materials Processing Technology,2022,Vol.305

[13]Peixin Zhong;Genyu Chen;Shaoxiang Cheng;Mingquan Li.Study on the effect of laser pre-sintering in laser-assisted glass frit bonding[J].Journal of Materials Research and Technology,2022,Vol.20:2309-2322

[14]ZhouWei;Chen Genyu;Cao Kun;Luo,Fengrong;Wei Yi;Li Mingquan.Dual-laser dressing concave rectangular bronze-bonded diamond grinding wheels[J]..Diamond and Related Materials,2022,:108830

[15]Longzhou Dai;Genyu Chen;Zizhao Shan.Experimental study on silica powder mixed electrical discharge dressing of coarse diamond grinding wheel[J].Journal of Manufacturing Processes,2022,Vol.73:748-756

[16]Tao,Nengru;Chen,Genyu;Fan,Licheng;Wang,Biao;Li,Mingquan;Fang,Wenjun.Temperature-dependent material removal during pulsed laser processing of CFRP composites.[J].Optics&Laser Technology,2021,Vol.144

[17]Dai,Longzhou;Chen,Genyu;Shan,Zizhao.Study on ultra-high speed nano-grinding of monocrystalline copper with V-shaped diamond abrasive grains based on molecular dynamics method[J].Diamond and Related Materials,2021,Vol.111:108224

[18]Yin Jiu,Chen Genyu,Zhu Zhichao,Jin Mengqi,Hu Bang.Ablation mechanism investigation and ablation threshold prediction of single crystal diamond irradiated by femtosecond laser[J].DIAMOND AND RELATED MATERIALS,2021,Vol.111:108173

[19]Zhou,C(Zhou,Cong);Li,HG(Li,Honggeng);Chen,GY(Chen,Genyu);Wang,G(Wang,Gang);Shan,ZZ(Shan,Zizhao).Effect of single pulsed picosecond and 100 nanosecond laser cleaning on surface morphology and welding quality of aluminium alloy(Article)[J].Optics and Laser Technology,2020,Vol.127:106197

[20]Chen G.,Wang B.,Zhong P.,Liu J.,Li W..Laser scanning welding of 2060 Al-Li alloy with filler wire[J].Hanjie Xuebao/Transactions of the China Welding Institution,2020,Vol.41(4):44-50

[21]Chen Genyu,Wei Yi,Peng YanBo,Wang Yanyi,Fiber-Laser CNC Tangential Turing V-shaped Concave Diamond Grinding Wheel System Based on Machine Vision Technology,[J]The International Journal of Advanced Manufacturing Technology,2019

[22]Houfu Dai,Shaobo Li,Genyu Chen,Comparison of subsurface damages on mono-crystalline silicon between traditional nanoscale machining and laser-assisted nanoscale machining via molecular dynamics simulation[J].NUCLEAR INSTRUMENTS&METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS,2019

[23]Jiu YIn,Genyu Chen,Experiment on Ablation Threshold of Single Crystal Diamond Produced by Femtosecond Laser Processing[J].Zhongguo Jiguang,2019

[24]QiYi,GenyuChen,ShileiDeng,DianwuZhou,Periodic root humps in thick-plate laser welding using steady electromagnetic force[J].JOURNAL OF MATERIALS PROCESSING TECHNOLOGY,2019,273:116247

[25]GenyuChen,Bin Wang,Research on the"infinity"-shaped laser scanning welding process for aluminum alloy[J].OPTICS AND LASER TECHNOLOGY,2018

[26]GenyuChen,Yan Zhang,Testing of hot crack using laser-MAG combined welding for 42CrMo steel[J].Hanjie Xuebao,2019

[27]Dai,Houfu,Chen,Genyu,A molecular dynamics investigation into the mechanisms of material removal and subsurface damage of nanoscale high speed laser-assisted machining[J].MOLECULAR SIMULATION,2018

[28]Cai Song,Chen Gen-Yu,Research and application of plasma recoil pressure physical model for pulsed laser ablation material[J].ACTA PHYSICA SINICA,2018

[29]Dai,Houfu,Li,Shaobo,Chen,Genyu,Comparison of subsurface damages on mono-crystalline silicon between traditional nanoscale machining and laser-assisted nanoscale machining via molecular dynamics simulation[J].NUCLEAR INSTRUMENTS&METHODS IN PHYSICS RESEARCH(SCI)SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS,2018

[30]Mingjun Zhang,Kun Tang,Jian Zhang,Chen Genyu,Effects of processing parameters on underfill defects in deep penetration laser welding of thick plates[J].INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY,2018,96(3)

[31]Jiu Yin,Chen Genyu,Femtosecond pulsed laser fabrication of a novel SCD grinding tool with positive rake angle[J].APPLIED PHYSICS A-MATERIALS SCIENCE&PROCESSING,2018,859

[32]Zhang Mingjun,Chen Shun,Zhang Yingzhe,Chen Genyu,Mechanisms for Improvement of Weld Appearance in Autogenous Fiber Laser Welding of Thick Stainless Steels[J].METALS,2018

[33]Qi Yi,Chen Genyu,Root defects in full penetration laser welding of thick plates using steady electromagnetic force[J].JOURNAL OF MATERIALS PROCESSING TECHNOLOGY,2018,97-103

[34]Yan Zhang,Genyu Chen,Binghua Chen,Experimental study of hot cracking at circular welding joints of 42CrMo steel[J].Optics and Laser Technology,2017,97:327-334

[35]Yan Zhang,Genyu Chen,Optimization of hybrid laser arc welding of 42CrMo steel to suppress pore formation[J].Applied Physics A,2017,389

[36]Dai H,Chen G,Zhou C,Fang Q,Fei X.A numerical study of ultraprecision machining of monocrystalline silicon with laser nano-structured diamond tools by atomistic simulation.Applied Surface Science,2017,393:405-416.

[37]Zhang Y,Chen G,Zhou C,et al.Pores formation in laser–MAG welding of 42CrMo steel[J].Journal of Materials Processing Technology,2017,245.

[38]Dai H,Chen G.A molecular dynamics investigation into the mechanisms of material removal and subsurface damage of nanoscale high speed laser-assisted machining.Molecular Simulation,2017,43(1):42-51.

[39]Dai H,Chen G,Li S.Investigation of tool geometry in nanoscale cutting single crystal copper by molecular dynamics simulation.High Temperature Materials and Processes,2017

[40]Zhou C,Dai H,Li S,Chen G.Comparison of subsurface damages on mono-crystalline silicon between traditional nanoscale machining and Laser-assisted nanoscale machining via molecular dynamics simulation.Journal of Materials Processing Technology,2017

[41]Zhang Y,Chen G,Zhou C,et al.Pores formation in laser–MAG welding of 42CrMo steel[J].Journal of Materials Processing Technology,2017,245:309-317.

[42]Zhang Y,Chen G,Mao S,et al.Optimization of hybrid laser arc welding of 42CrMo steel to suppress pore formation[J].Applied Physics A,2017,123(6):389.

[43]Zhang Y,Chen G,Zhou C,et al.Experimental study of hot cracking at circular welding joints of 42CrMo steel[J].Optics and Laser Technology.2016

[44]Houfu Dai,Genyu Chen,Qihong Fang,The effect of tool geometry on subsurface damage and material removal in nanometric cutting single-crystal silicon by a molecular dynamics simulation[J].APPL PHYS A-MATER,2016,804

[45]Dai H,Chen G,Fang Q,Yin J.The effect of tool geometry on subsurface damage and material removal in nanometric cutting single-crystal silicon by a molecular dynamics simulation.Applied Physics A,2016,122(9):804.

[46]Chen G,Cai S,Zhou C.On the laser-driven integrated dressing and truing of bronze-bonded grinding wheels[J].Diamond and Related Materials,2015,60:99-110.

[47]Song C,Genyu C,Cong Z,et al.The mechanism and application of bronze-bond diamond grinding wheel pulsed laser dressing based on phase explosion[J].The International Journal of Advanced Manufacturing Technology,2015:1-13.

[48]Li S,Chen G,Zhou C.Effects of welding parameters on weld geometry during high-power laser welding of thick plate[J].The International Journal of Advanced Manufacturing Technology,2015:1-6.

[49]Zhou C,Deng H,Chen G,et al.Study of the grinding performance of laser-trued and dressed bronzed-bonded diamond grinding wheels[J].The International Journal of Advanced Manufacturing Technology,2015:1-7.

[50]Zhou C,Deng H,Chen G,et al.Numerical simulation of single-pulse laser ablation for dressing a bronze-bond diamond grinding wheel[J].Precision Engineering,2015.

[51]Mei L,Chen G,Yan D,et al.Impact of inter-sheet gaps on laser overlap welding performance for galvanised steel[J].Journal of Materials Processing Technology,2015,226:157-168.

[52]Cai S,Chen G,Zhou C.Research and application of surface heat treatment for multipulse laser ablation of materials[J].Applied Surface Science,2015,355:461-472.

[53]Chen G,Deng H,Zhou X,et al.Online tangential laser profiling of coarse-grained bronze-bonded diamond wheels[J].The International Journal of Advanced Manufacturing Technology,2015:1-6.

[54]Zhang X H,Chen G Y,An W K,Deng Z H,Liu W,Yang C.Experimental Study of Machining Characteristics in Laser Induced Wet Grinding Silicon Nitride[J].Materials and Manufacturing Processes.2014,29(11-12):1477-1482.

[55]Zhang X H,Chen G Y,An W K,Deng Z H,Zhou Z X.Experimental investigations of machining characteristics of laser-induced thermal cracking in alumina ceramic wet grinding[J].International Journal of Advanced Manufacturing Technology.2014,72(9-12):1325-1331.

[56]Zhang X H,Cuo Y,Chen G Y,An W K,Deng Z H.Experimental Investigations of Microcracks in Laser-induced Cracking Turning Alumina Ceramic[J].Materials and Manufacturing Processes.2014,29(10):1277-1283.

[57]Zhang M J,Chen G Y,Zhou Y,Liao S H.Optimization of deep penetration laser welding of thick stainless steel with a 10 kW fiber laser[J].Materials&Design.2014,53:568-576.

[58]Li S,Chen G,Zhang M,Zhou Y,Zhang Y.Dynamic keyhole profile during high-power deep-penetration laser welding[J].Journal of Materials Processing Technology.2014,214(3):565-570.

[59]Deng H,Chen G Y,Zhou C,Zhou X C,He J,Zhang Y.A theoretical and experimental study on the pulsed laser dressing of bronze-bonded diamond grinding wheels[J].Applied Surface Science.2014,314:78-89.

[60]Li S,Chen G,Katayama S,Zhang Y.Experimental study of henomena and multiple reflections during inclined laser irradiating[J].Science and Technology of Welding and Joining.2014,19(1):82-90.

[61]Li S C,Chen G Y,Katayama S,Zhang Y.Relationship between spatter formation and dynamic molten pool during high-power deep-penetration laser welding[J].Applied Surface Science.2014,303:481-488.

[62]Deng H,Chen G Y,Zhou C,Li S C,Zhang M J.Processing parameter optimization for the laser dressing of bronze-bonded diamond wheels[J].Applied Surface Science.2014,290:475-481.

[63]Li S,Chen G,Zhang Y,Zhang M,Zhou Y,Deng H.Investigation of keyhole plasma during 10 kW high power fiber laser welding[J].Laser Physics.2014,24(10):106003(10 pp.)-106003(10 pp.).

[64]Li S C,Chen G Y,Zhou C,Chen X F,Zhou Y.Plasma inside and outside keyhole during 10 kW level fiber laser welding[J].ActaPhysicaSinica.2014,63(10):104212.

[65]Chen G Y,Deng H,Xu J B,Li Z G,Zhang L.Plasma characterization studies of laser dressing for bronze-bonded diamond wheel by a pulsed fiber laser[J].ActaPhysicaSinica.2013,62(14):144204.

[66]Chen G Y,Zhang M J,Zhao Z,Zhang Y,Li S C.Measurements of laser-induced plasma temperature field in deep penetration laser welding[J].Optics and Laser Technology.2013,45:551-557.

[67]Chen G Y,Mei L F,Zhang M J,Zhang Y,Wang Z J.Research on key influence factors of laser overlap welding of automobile body galvanized steel[J].Optics and Laser Technology.2013,45:726-733.

[68]Zhang M J,Chen G Y,Zhou Y,Li S C,Deng H.Observation of spatter formation mechanisms in high-power fiber laser welding of thick plate[J].Applied Surface Science.2013,280:868-875.

[69]Zhang M J,Chen G Y,Zhang Y,Wu K R.Research on microstructure and mechanical properties of laser keyhole welding-brazing of automotive galvanized steel to aluminum alloy[J].Materials&Design.2013,45:24-30.

[70]Wang Q,Xiang J,Chen G Y,Cheng Y L,Zhao X Q,Zhang S Q.Propylene flow,microstructure and performance of WC-12Co coatings using a gas-fuel HVOF spray process[J].Journal of Materials Processing Technology.2013,213(10):1653-1660.

[71]Zhang M J,Chen G Y,Zhou Y,Li S C.Direct observation of keyhole characteristics in deep penetration laser welding with a 10 kW fiber laser[J].Optics Express.2013,21(17):19997-20004.

[72]MingJun Zhang,GenYu Chen,Yi Zhang,et al.Research on microstructure and mechanical properties of laser keyhole welding–brazing of automotive galvanized steel to aluminum alloy.Materials&Design,2013,45:24–30.

[73]Zhang Y,Li S C,Chen G Y,Mazumder J.Experimental observation and simulation of keyhole dynamics during laser drilling[J].Optics and Laser Technology.2013,48:405-414.

[74]Mei L F,Yan D B,Yi J M,Chen G Y,Ge X H.Comparative analysis on overlap welding properties of fiber laser and CO2 laser for body-in-white sheets[J].Materials&Design.2013,49:905-912.

[75]Yi Zhang,Shichun Li,Genyu Chen,Hairong Zhang,Mingjun Zhang.Characteristics of Zinc Behavior during Laser Welding of Zinc“Sandwich”Sample.Optics and Laser Technology 44(2012)2340–2346.

[76]Mei L F,Yi J M,Yan D B,Liu J W,Chen G Y.Comparative study on CO2 laser overlap welding and resistance spot welding for galvanized steel[J].Materials&Design.2012,40:433-442.

[77]Chen G Y,Mei L F,Zhang B,Yu C R,Shun K J.Experiment and numerical simulation study on laser truing and dressing of bronze-bonded diamond wheel[J].Optics and Lasers in Engineering.2010,48(3):295-304.

[78]Mei L F,Chen G Y,Zhang B,Chen G G,Huang K.Measurement of YAG laser absorptance by artificial diamond and cubic boron nitride[J].Optics and Laser Technology.2009,41(6):770-777.

[79]Mei L F,Chen G Y,Jin X Z,Zhang Y,Wu Q.Research on laser welding of high-strength galvanized automobile steel sheets[J].Optics and Lasers in Engineering.2009,47(11):1117-1124.

[80]Wu Q,Gong J K,Chen G Y,Xu L Y.Research on laser welding of vehicle body[J].Optics and Laser Technology.2008,40(2):420-426.

[81]Zhang Y,Chen G Y,Wei H Y,Zhang J.A novel"sandwich"method for observation of the keyhole in deep penetration laser welding[J].Optics and Lasers in Engineering.2008,46(2):133-139.

[82]-Z.Xie,G.-Y.Chen,L.-J.Li.Dressing of resin-bonded superabrasive grinding wheels by means of acousto-optic Q-switched pulsed Nd:YAG laser.Optics&Laser Technology,2004,36(5):409-419

[83]C.Yung,G.Y.Chen,L.J.Li.The Laser dressing of resin-boned CBN wheels by a Q-Switched Nd:YAG Laser.The International Journal Advanced Manufacture Technology,2003,22(8)

[84]袁尚勇,陈根余,戴隆州,鲁恩昊.电火花机械磨削修整粗粒度成形砂轮试验研究.中国机械工程:1-9[2023-02-13].

[85]陈根余,陶能如,李明全,王彪,肖铮铭.碳纤维复合材料激光制孔技术研究进展[J].复合材料学报,2022,第39卷(4):1395-1410

[86]陈根余,戴隆州,李明全,袁尚勇.激光与电火花复合修整粗粒度弧形金刚石砂轮试验研究.中国机械工程,2022,33(15):1780-1786.

[87]陈根余,殷赳,朱智超,胡搒.正前角金刚石磨粒磨削钛合金仿真与试验研究.湖南大学学报(自然科学版),2021,48(12):70-78.

[88]陈根余,钟沛新,程少祥.玻璃激光焊接过程中玻璃料与基板的耦合行为.中国激光,2021,48(18):49-57.

[89]陈根余,王竟如,齐毅,李玮,钟沛新,董理.电磁辅助激光单道焊接30mm厚板研究.中国激光,2021,48(10):16-23.

[90]陈根余,王彬,钟沛新,刘建华,李玮.2060铝锂合金扫描填丝焊接工艺.焊接学报,2020,41(04):44-50+99.

[91]陈根余,张焱,雷燃,42CrMo钢活塞激光-MAG复合焊接热裂纹试验.焊接学报,2019

[92]蔡颂;陈根余;周聪;明兴祖,多脉冲激光修整青铜金刚石砂轮的表面变质层,中国激光,2017

[93]蔡颂;陈根余;周聪;周枫林;李光,脉冲激光烧蚀材料等离子体反冲压力物理模型研究与应用,物理学报,2017

[94]陈根余,周兴才,周聪,邓辉,张勇,陈俊.树脂结合剂CBN砂轮光纤激光径向修锐及磨削实验研究[J].中国激光.2015,42(2).

[95]陈根余,夏海龙,周聪等.高功率光纤激光焊接底部驼峰的机理研究.中国激光.2015,42(02)

[96]蔡颂,陈根余,何杰.脉冲光纤激光修锐青铜金刚石砂轮相爆炸研究[J].中国激光,2015(9):203-210.

[97]邓辉,陈根余,周聪,周兴才.脉冲激光切向整形径向修锐青铜金刚石砂轮[J].中国激光.2014,41(EI).

[98]陈根余,周宇,张明军,李时春.10kW级光纤激光厚板焊接表面塌陷的试验研究[J].中国机械工程.2014,25(14):1960-1966.

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[101]陈根余,周宇,张明军,陈晓锋,廖生慧.大功率光纤激光厚板自熔焊焊缝表面质量改善研究[J].中国激光.2013,40(11):1103011.

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[103]周惦武,吴平,彭利,张屹,陈根余.镀Zn钢-6016铝合金异种金属的激光熔钎焊及数值模拟[J].中国有色金属学报.2012,22(6):1738-1746.

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[105]陈根余,卜纯,邓辉,贾天阳,李时春.激光-机械复合修整超硬磨料砂轮研究[J].中国激光.2012,39(7):0703002.

[106]陈根余,康斌,张屹,李时春,谭力鹏.光纤激光入射角对高强钢对接焊焊接性能的影响[J].中国激光.2012,39(1):0103008.

[107]王涛,周惦武,彭艳,张屹,陈根余.钢/铝异种金属预置Si粉的光纤激光焊接[J].中国激光.2012,39(3):0303009.

[108]张明军,陈根余,李时春,梅丽芳,张正.车用铝合金与镀锌钢光纤激光搭接焊试验研究[J].中国激光.2011,38(6):0603010.

[109]陈根余,陈飞,张屹,李时春,康斌.对接间隙对车用高强钢光纤激光焊接的影响[J].中国激光.2011,38(6):0603013.

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[111]梅丽芳,陈根余,金湘中,张明军,陈明.车用铝合金光纤激光搭接焊的研究[J].中国激光.2010,37(8):2091-2097.

[112]梅丽芳,陈根余,刘旭飞,赵智,黄丰杰.车身覆盖件的三维激光切割工艺[J].中国激光.2009,36(12):3308-3312.

[113]陈根余,陈国桂,黄孔,梅丽芳,余春荣.激光修整青铜金刚石砂轮精度研究[J].中国激光.2009,36(5):1278-1281.

[114]张屹,陈根余,李力钧.基于实测小孔的激光深熔焊接三维传热模型[J].焊接学报.2008,29(2):27-30.

[115]陈根余,赵智,张屹,张均.激光焊接等离子体温度场测量及数据处理[J].中国激光.2008,35(11):1778-1782.

[116]伍强,陈根余,徐兰英,龚金科,李力钧.CO2激光焊接车身拼焊板[J].中国激光.2007,34(12):1726-1731.

[117]陈根余,朱定军,彭凯,尤为民,李力钧,梅丽芳.脉冲激光修锐青铜金刚石砂轮机制研究.中国激光,2007,34(增刊):245-249

[118]伍强,陈根余,徐兰英,李力钧,龚金科.激光深熔焊接车身安全件的热循环研究.中国激光,2007,34(增刊):283-288

[119]伍强,陈根余,徐兰英等激光焊接身车拼焊板,中国激光,2007,34(12),12

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[121]陈根余,于俊勇,李力钧,马宏路.激光烧蚀金刚石磨粒及其变质层与微裂纹分析[J].中国机械工程.2006,17(s1):317-320.

[122]陈根余,李力钧,马宏路,刘礼,柳士江,谢小柱.调Q YAG脉冲激光修锐和整形青铜金刚石砂轮.机械工程学报,2005,41(4):174-179

[123]陈根余,彭凯,李力钧,刘礼.脉冲激光烧蚀树脂CBN砂轮的数值模拟研究.中国机械工程,2005,16(6):557-561

[124]张屹,李力钧,陈根余,张刚.激光深熔焊接小孔的反射吸收.焊接学报,2004,27(5):486-489

[125]谢小柱,李力钧,陈根余.Nd:YAG单脉冲激光烧蚀超硬磨料砂轮的试验研究.中国激光,2004,31(2):(增刊)254-256

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[127]李学谦,李建民,刘志昌,傅杰兴,陈根余.Zn-Al合金半固态挤压成型试验研究.湖南大学学报,2002,(6):37-41

[128]周水庭,黄红武,盛晓敏,陈根余,李勤.普通磨床安全设计的危险分析和风险评价.湖南大学学报,2001,(4):54-58

[129]盛晓敏,黄红武,刘建宁,周水庭,陈根余.机械安全设计方法的研究.中国机械工程,2001,12(12):1354-1356

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[131]曹明月,陈根余,周伟,等.偏转激光切向修整凹形面金刚石倒角砂轮[J/OL].激光技术,1-14.

[132]刘宣呈,陈根余,操坤,等.成形砂轮激光修整的多轮廓图像合成检测方法[J/OL].激光技术,1-17.

[133]陈根余,鲁恩昊,戴隆州,等.凹小圆弧金刚石砂轮电火花修整试验研究[J].湖南大学学报(自然科学版),2023,50(10):164-174.

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[135]陈根余,程少祥,钟沛新.基于响应面法的玻璃激光焊接焊缝及气孔研究.激光技术,2022,46(04):474-480.

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[137]陈根余,江东远,王彬,陈兵华,钟沛新,王竟如.6061铝合金超声波辅助激光焊接变形控制研究.激光技术,2021,45(05):541-547.

[138]单子昭,周聪,陈根余,戴隆州.超硬磨料砂轮不同介质中电火花修整试验研究.金刚石与磨料磨具工程,2020,40(05):79-84.

[139]陈根余,何江,钟沛新,程少祥,王彬.玻璃激光焊接气孔控制研究.激光技术,2021,45(03):286-291.

[140]陈根余,韦怡,王彦懿,王彬,朱智超,殷赳,何江激光轮廓参数对选区激光熔化成形随形水路模具的研究.应用激光,2019

[141]殷赳,陈根余,熊彪,朱智超,王彦懿,金梦奇,胡搒,飞秒激光加工单晶金刚石制备正前角磨削工具.表面技术,2019

[142]陈根余,朱智超,殷赳,熊彪,金梦奇,单晶金刚石飞秒激光加工的烧蚀阈值实验.应用激光,2018

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[144]周聪,王刚,陈根余,毛帅,常明,韦怡,皮秒脉冲激光清洗铝合金工艺试验研究.应用激光,2018

[145]常明,陈根余,周聪,彭檐波,熊彪,王刚,皮秒激光去除热轧钢板氧化层试验研究应用激光,2018

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[147]陈根余,陈飞,周聪,张明军,钟沛新,毛帅厚板不锈钢万瓦级激光焊接缺陷抑制研究.应用激光,2018

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[149]彭和思;陈兵华;唐景龙;邓时累;陈根余,;陈焱,激光焊接工艺对K418与0Cr18Ni9焊接接头性能的影响,激光技术,2017

[150]蒋翼;陈根余;周聪;张焱,碳纤维复合材料皮秒激光切割工艺研究,激光技术,2017

[151]蔡颂;熊彪;陈根余;吴吉平,青铜金刚石砂轮的激光整形与修锐,红外激光与工程,2017

[152]杜晗,陈根余,周聪,周旭,王彦懿.光纤激光在线整形金刚石砂轮检测系统设计.激光技术,2016,40(6):930-934.

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[154]任成高;申晓龙;张明军;陈根余,高功率激光器及应用于厚板焊接的技术进展,热加工工艺,2016

[155]周逸凡;陈根余;张焱;李时春;蒋翼,5A06铝合金光纤激光-MIG电弧复合焊接研究应用激光,2016

[156]李时春;邓辉;张焱;陈根余,高功率激光深熔焊接时喷出金属蒸气动力学行为研究应用激光,2016

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[163]周惦武,田伟,彭利,张屹,陈根余.镀锌钢/铝添加中间夹层Cu、Pb的激光搭接焊研究[J].稀有金属材料与工程.2014(05):1181-1186.

[164]陈根余,吴克如,廖生慧等.V型坡口对钢/铝激光对接熔钎焊性能的影响[J].激光技术,2014,38(1):11-16.

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[166]王大伟,周聪,张勇,陈根余,邓辉,周兴才,何杰.青铜金刚石砂轮光纤激光辅助侧吹修锐试验研究[J].应用激光,2014,05:404-410.

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[173]张宏圭,金湘中,陈根余,张明军,邹宇峰.光纤激光焊接5052铝合金镁元素烧损研究[J].激光技术.2012,36(6):713-718.

[174]顾春影,陈根余,梅丽芳,蔡兴.车身零部件的激光搭接焊与电阻点焊对比分析[J].热加工工艺.2011,40(17):136-138+142.

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[177]黄孔,陈根余,陈建明,余春荣,陈国桂.位移检测传感器系统的设计与分析[J].半导体光电.2010,31(1):157-160.

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[179]陈根余,梅丽芳,张明军,刘旭飞,王祖建.激光焊接、切割在汽车制造中的应用[J].激光与光电子学进展.2009,46(9):17-23.

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[181]陈根余,张均,张屹,赵智.等离子体温度分布测量方法的研究[J].激光技术.2008,32(2):137-139.

[182]陈根余,黄丰杰,刘旭飞,张均.三维激光切割技术在车身覆盖件制造中的应用与研究[J].激光杂志.2008,29(4):67-69.

[183]张屹,陈根余,李力钧.光致等离子体电子温度和密度的测量设计[J].制造技术与机床.2008(3):98-101.

[184]伍强,徐兰英,陈根余,龚金科,李力钧.高强度镀锌钢板激光焊接接头的耐蚀性研究[J].激光技术.2008,32(3):334-336.

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[186]伍强,陈根余,徐兰英,龚金科,李力钧.CO2激光焊接汽车镀锌板的试验研究[J].机械与电子.2007(5):21-24.

[187]谭成光,陈根余,伍强,谢水凤.冷轧钢与高强度镀锌钢的CO2激光拼焊研究[J].机械制造.2007,45(6):20-22.

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[189]王贵,陈根余,伍强,申晓龙.激光深熔焊接镀锌高强板工艺参数对熔深熔宽的试验研究[J].精密制造与自动化.2007(3):24-25.

[190]申晓龙,罗永新,张来希,陈根余,宁朝阳.影响高强镀锌钢数控CO2激光焊焊接质量的试验分析[J].焊接技术.2007,36(6):45-48.

[191]伍强,徐兰英,陈根余,龚金科,李力钧.CO2激光焊接高强度镀锌板的试验研究[J].激光技术.2007,31(6):571-574.

[192]伍强,陈根余,龚金科,李力钧.激光焊接高强度镀锌钢板的耐蚀性研究[J].红外与激光工程.2007,36(S1):384-387.

[193]伍强,徐兰英,陈根余,龚金科,李力钧.CO2激光焊接高强度镀锌板的试验研究[J].激光技术.2007,31(6):571-574.

[194]陈根余,朱定军,尤卫民,申晓龙.高速磨床动态性能分析[J].精密制造与自动化.2006(2):31-32+49.

[195]申晓龙,张来希,陈根余.抑制高速磨削颤振实验研究[J].现代制造工程.2006(6):119-120.

[196]申晓龙,张来希,陈根余.数控铣削刀具半径补偿的研究与实现[J].湖南理工学院学报(自然科学版).2006,19(2):29-32.

[197]陈根余,易隆辉,柳士江.声光调QYA激光修整超硬磨料砂轮测控系统.机械与电子,2006,8:30-32

[198]申晓龙,陈根余.夹具设计中定位误差的微分计算[J].工具技术.2006,40(11):30-32.

[199]申晓龙,陈根余,朱定军,尤卫民.高速磨床动态性能分析[J].机械制造.2006,44(7):70-71.

[200]李力钧,陈根余.折叠式准封离型CO2激光器及其在切割和焊接中的应用.制造技术与机床,2004,(2):34-36

[201]陈根余,张桂香,钟志华.跨学科培养构建现代化制造专业人才培养新模式.教育科研论坛,2004,(02):45-46

[202]陈根余,柳士江,李力钧,易隆辉,马宏路.基于PSD的DSP闭环控制系统在激光修整超硬磨料砂轮中的应用.应用激光,2004,24(6):383-386

[203]谢小柱,陈根余,李力钧.声光调Q Nd:YAG脉冲激光修锐金属结合剂金刚石砂轮.金刚石与磨料磨具工程,2003,(5):12

[204]陈根余,刘礼,李力钧,刘劲松,周海萍.声光调Q Nd:YAG脉冲激光修锐树脂结合剂CBN砂轮.金刚石与磨料磨具工程.2003,(01):8-12

[205]陈根余,谢小柱,李力钧,刘劲松.超硬磨料砂轮修整与激光修整新进展.金刚石与磨料磨具工程,2002,(2):8-12

[206]邓朝晖,孙宗禹,通讯,周志雄,刘子建,陈根余.制订“机械设计制造及其自动化”本科专业教学计划培养跨世纪的高等工程技术人才.黑龙江高教研究,2000,(98):113-115

[207]陈根余,李力钧,刘劲松.超硬磨料砂轮激光修整.机械设计与制造,2000,(3)49-50

[208]Jiu Y,Genyu C,Biao X,et al.A study on machining of single crystal diamond by femtosecond laser for fabrication of grinding tools with positive rake angle.International Congress on Applications of Lasers&Electro-Optics.Laser Institute of America,2018,2018(1):P126.

[209]Bang H,Genyu C,Yanyi W,et al.A comprehensive review on laser conditioning and structuring of superhard abrasive grinding wheels.International Congress on Applications of Lasers&Electro-Optics.Laser Institute of America,2019,2019(1):Micro 1403.

[210]陈根余,戴隆州,李明全,袁尚勇.激光与电火花复合修整粗粒度弧形金刚石砂轮试验研究,第二十一届中国磨粒技术学术会议,大连,2021年9月

[211]周宇,陈晓峰,张明军,陈根余等,大功率光纤激光厚板自熔焊焊缝表面质量研究,第三届激光先进制造技术应用研讨会论文集,北京,4.1

[212]陈根余,陈国桂.激光-机械复合精密修整青铜金刚石砂轮研究,中国光学学会2008年学术年会论文集,2008年11月

[213]陈根余,刘旭飞.汽车车身制造中的激光加工应用与发展,第十六届全国汽车车身技术研讨会论文集,2008年11月

[214]梅丽芳,陈根余.Research on Laser Welding of High-strength Galvanized steel sheets,第八届海内外青年设计与制造科学会议论文集,2008年10月

[215]Chen G Y,Mei L F,Zhang B,Zhu D J,Chen G G.Numerical simulation study on truing and dressing of bronze-bonded diamond wheel with pulsed laser,14th Conference of Abrasive Technology,Nanjing,PEOPLES R CHINA,OCT 26-28,2007.

[216]G.Y.Chen,L.F.Mei,B.Zhang,W.M.You,J.Y.Yu,K.Huang.Laser truing and dressing of bronze-bonded diamond grinding wheel and its high-speed grinding performance,10th Conference of ISAAT Precision Grinding and Abrasive Technology at SME international Grinding,Dearborn,Michigan,USA,SEP 26-28,2007.

[217]伍强,陈根余,徐兰英.高强度镀锌钢板的激光焊接工艺及焊接缺陷研究.同济大学研究生院“2007年全国博士生学术论坛机械工程分论坛”论文集,2007年8月,上海

[218]范滇元,邓树森,陈根余.黄丰杰.激光加工在汽车车身制造中的应用与发展.中国机械工程学会年会论文集.北京:机械工业出版社,2007,11

[219]张均,陈根余,赵智,刘旭飞.激光深熔焊接等离子体温度分布的光谱测量.中国机械工程学会年会论文集.北京:机械工业出版社,2007,11

[220]黄丰杰,陈根余,刘旭飞.三维激光切割技术在车身覆盖件制造中的应用.中国机械工程学会年会论文集.北京:机械工业出版社,2007,11

[221]陈根余,朱定军,彭凯等,脉冲激光修锐青铜金刚石砂轮烧蚀机制研究,第八届全国激光加工学术会议,广州,11.25.

[222]伍强,陈根余,徐兰英等,激光深熔焊接车身安全件的热循环研究,第八届全国激光加工学术会议,广州,11.25

[223]伍强,陈根余.CO2激光焊接高强度钢车身安全件的研究.焊接国际论坛论文集,《机械工人》杂志社出版,2006

[224]陈根余,李力钧,刘劲松,刘礼,谢小柱.声光调QYAG脉冲激光修整超硬磨料砂轮研究.激光技术应用与产业发展论坛论文集,2003,4:102-106

[225]李力钧,陈根余.折叠式准封离型千瓦级高光束质量CO2激光器及其在切割和焊接中的应用.焊接新技术及应用研讨会.论文集,2003,236

[226]李力钧,陈根余.折叠式准封离型千瓦级高光束质量CO2激光器.中国机械工程学会年会论文集,2003,25

[227]S.Liu,G.Y.Chen,Y.Zhang,J.M.Luan.Improving the Qimensional Accuracy of Laser Shaping by Using a Laser Beam with a Subdiffraction-Limited Depth of Focus.Section D-TCALEO 2000,2000,256~263

发明专利

[1]陈根余,李小保,常明.一种万能自动复合砂轮修整机,欧洲发明专利号:EP19180894.8

[2]陈根余,戴隆州,李明全,袁尚勇,鲁恩昊.一种凹圆弧金属结合剂金刚石砂轮精密修整方法,发明专利号:ZL202210406994.1

[3]陈根余,周伟,李明全,操坤,高孟阳,刘煜昆,韦怡,罗峰嵘.一种用于凹面成形砂轮的双偏转光束整形装置及加工方法,发明专利号:ZL2021106383163

[4]陈根余,熊彪.一种基于视觉检测激光修整成型砂轮装置及其修整方法,发明专利号:ZL2018106323777

[5]陈根余,欧阳征订.一种万能型砂轮全自动复合修整集成控制方法,发明专利号:ZL 201810631642X

[6]陈根余,钟沛新,陈飞.一种气墙密封的气体浮力辅助焊接装置及使用方法,发明专利号:ZL2019101492881

[7]陈根余,陶能如,范利诚.一种用于厚板复合材料错位双光束激光制孔装置及加工方法,发明专利号:ZL2019104180824

[8]陈根余,陶能如,肖铮铭,王彪.用于碳纤维复合材料的随动可调正反刃扩孔刀具,发明专利号:2021104849559

[9]陈根余; 李小保;常明 .一种自动复合砂轮修整机,发明专利号:ZL2018106316383

[10]陈根余,彭檐波.基于复映法的成形砂轮检测修整装置及砂轮整形方法,发明专利号:ZL2018106316400

[11]陈根余,钟沛新,刘晓峰,艾岳巍,龙雨.一种激光三维无限旋转头的密封装置和密封方法,发明专利号:ZL2018106316434

[12]陈根余,陈飞.一种气体浮力辅助焊接装置及利用该装置的焊接方法,发明专利号:ZL2018105238086

[13]陈根余,殷赳,周聪,戴厚富,王彦懿,熊彪.一种基于脉冲激光加工的新型正前角金刚石磨具制造方法.发明专利号:ZL201610281488.9

[14]陈根余,李时春,周逸凡.一种抑制万瓦级激光焊接厚板上表面缺陷的方法.发明专利号:ZL201510039722.2

[15]陈根余,黎长邹,周聪,李时春,张焱,夏海龙,陈晓峰,廖生慧,周逸凡一种非熔透激光焊接设备及方法.发明专利号:ZL201410242022.9

[16]陈根余,廖生慧,周聪,王大伟,李时春,陈晓峰,张焱,夏海龙,黎长邹,周逸凡,一种用于激光焊接的垂直检测装置和检测方法.发明专利号:ZL201410241869.5

[17]陈根余,王大伟,何杰,周聪,邓辉,张玲,周兴才,张勇,陈俊,蔡颂,一种矩形平行光束整形成型超硬磨料砂轮的方法.发明专利号:ZL 2014100597135

[18]陈根余,陈俊,周聪,邓辉,张玲,周兴才,王大伟,张勇,蔡颂.一种采用双光束修整超薄超硬材料砂轮的设备及方法.专利发明号:ZL201410048875.9

[19]陈根余,周兴才,周聪,邓辉,张玲,张勇,王大伟,陈俊,杜晗,蔡颂.一种凹曲面超硬磨料砂轮激光修整设备及方法.发明专利号:ZL201410048837.3

[20]陈根余,周兴才,周聪,邓辉,蔡颂,张玲,张勇,王大伟,陈俊.一种电镀超硬磨料砂轮激光整形设备及方法.发明专利号:ZL201410048564.2

[21]陈根余,张勇,周聪,邓辉,张玲,周兴才,王大伟,蔡颂,陈俊等.一种利用光纤激光修锐密实型结合剂超硬砂轮设备.发明专利号:ZL201420063296.7

[22]陈根余,张明军,周聪.一种激光与熔融金属复合焊接板材的方法.发明发明专利号:ZL2013102611541

[23]陈根余,邓辉,张玲,徐建波,李宗根,袁勃.一种金刚石砂轮的粗修整的方法.发明专利号:ZL201310007358.2

[24]陈根余,蔡颂,周聪,陈洪星,周兴才,何杰,邓辉,张玲,陈俊,张勇,王大伟,杜晗.一种带有双切向液柱流的砂轮激光修整装置及其修整方法.发明专利号:ZL201310593721.3

[25]陈根余,钟志华,张屹,蔡兴,李时春,谭立鹏.三维拉伸件对接连接激光切割与焊接一体化方法.发明专利号:ZL 201110376501.6

[26]陈根余,钟志华,张屹,蔡兴,李时春,谭立鹏.车身零部件对接连接的激光切割与焊接一体化的夹具.发明专利号:ZL201110376708.3

[27]陈根余,黄孔,余春荣,孙康健,陈建明,曹艳.超硬磨料砂轮的激光修整方法.发明专利号:ZL200910044320.6

[28]陈根余,张屹,赵智,张钧.光致等离子体温度空间分布的探测装置及探测方法.发明专利号:ZL200810143472.7

[29]张屹,陈根余,李时春,周惦武,张海荣.基于特征元素等离子体光信号的镀锌钢填粉焊接过程中焊接缺陷的在线诊断方法.发明专利号:ZL 201010553902.X

[30]张屹,陈根余,李时春,金湘中.模拟激光深熔焊接小孔内压力及其特性的检测方法.发明专利号:ZL201010552020.1

[31]周聪,夏海龙,陈根余,李时春,张焱,廖生慧,陈晓峰,黎长邹,周逸凡.一种激光焊接旋转侧吹保护气的装置及方法.发明专利号:ZL201410241860.4

[32]周聪,张玲,陈根余,邓辉,周兴才,王大伟,陈俊,张勇,蔡颂.一种基于爆轰波压力和温度预测激光修整砂轮质量的方法.发明专利号:ZL201310593927.6

[33]张屹,谭力鹏,陈根余,蔡兴.一种适用于盒状结构的激光对接焊的车身结构及焊接方法.发明专利号:ZL201210124181.X

[34]张屹,张成磊,陈根余.主动式短波长激光焊接小孔监测及焊缝跟踪集成装置,发明专利号:ZL2011103823577

[35]宋立军,刘星伯,张屹,陈根余,史淑文.基于激光诱导等离子体光谱的激光焊接优化方法及其装置,发明专利号:ZL2015103767838

[36]宗国医,夏笔,冯超,樊景风,赵剑,陈根余,陈焱,高云峰.激光切割设备,发明专利号:ZL2017110581160

[37]张晓红,安伟科,陈根余,邓朝晖,周志雄.工程陶瓷激光诱导变质湿式磨削加工方法,发明专利号:ZL201410061535X

[38]谢峰粹,余锦超,李阳,余锦望,向水平,陈根余,陈焱,高云峰.一种激光穿孔的检测方法及系统,发明专利号:ZL2017110224661

[39]陈小冬,刘庆国,李栋全,唐景龙,陈根余,陈焱,高云峰.激光焊接系统及其焊接方法,发明专利号:ZL2017109781804

[40]陈小冬,李栋全,唐景龙,陈根余,陈焱,高云峰.激光焊接设备及其焊接方法,发明专利号:ZL201710787338X

[41]刘茂,潘佐梅,欧阳征定,甘杰家,向水平,陈根余,陈焱,高云峰.一种激光焊接位置误差补偿方法及激光焊接设备,发明专利号:ZL2017106476782

[42]戴畅,王欣,胡斌,邓超,赵剑,陈根余,陈焱,高云峰.一种工件的浮动支撑控制系统及方法,发明专利号:ZL2017105813952

[43]李建,杨磊,彭硕飞,陈根余,陈焱,高云峰.激光器激光功率信号的调制方法及装置,发明专利号:ZL2017102989816

[44]彭和思,陈兵华,唐景龙,邓时累,李想,陈根余,陈焱,高云峰.放气阀及其焊接方法,发明专利号:ZL2017102953566

[45]胡柱,罗贵长,夏小川,赵剑,陈根余,陈燚,高云峰.卡盘装置,发明专利号:ZL2017100571548

[46]邓时累,王慧,毛大英,刘斌,唐景龙,陈根余,陈燚,高云峰.流道腔体无飞溅高功率激光熔透焊的方法,发明专利号:ZL2016112302711

[47]王方,尹傅,唐景龙,陈根余,陈燚,高云峰.环状送粉喷嘴,发明专利号:ZL2016103816114

[48]计志明,梁晓华,刘昌军,周桂兵,梁剑寒,陈根余,陈燚,高云峰.用于多通道输出大功率电源的调试装置,发明专利号:ZL2016103397943

[49]段江涛,邓超,向水平,陈根余,陈燚,高云峰.二维激光切割管材的切割方法,发明专利号:ZL2016102702578

[50]李若涛,任敏,邓超,夏威,刘朝润,张炜,赵剑,陈根余,陈燚,高云峰.一种激光切割的收刀工艺,发明专利号:ZL2016102028621

[51]平俊杰,甘杰家,欧阳征定,向水平,陈根余,高云峰.激光加工控制方法和装置,发明专利号:ZL2016101848479

[52]郝大伟,肖俊君,陈根余,陈燚,高云峰.一种无应力安装光学元件的方法,发明专利号:ZL2016101581082

[53]张永峰,罗贵长,赵剑,陈根余,陈燚,高云峰.激光切割的感应装置,发明专利号:ZL2016101363228

[54]张永峰,罗贵长,赵剑,陈根余,陈燚,高云峰.激光切管的辅助支撑装置,发明专利号:ZL2016101376073

[55]杨磊,彭硕飞,李建,周桂兵,陈根余,陈燚,高云峰.激光器控制通信方法和系统,发明专利号:ZL2015110338292

[56]万虹,范国成,龚欢,肖俊君,陈根余,陈燚,高云峰.保护镜内腔结构优化方法和装置,发明专利号:ZL2015108967563

[57]范国成,万虹,龚欢,肖俊君,陈根余,陈燚,高云峰.激光切割设备及其激光头,发明专利号:ZL201510884862X

[58]李若涛,任敏,谢长发,李刚,肖武勇,谢健,陆志勇,刘朝润,张炜,赵剑,陈根余,陈燚,高云峰.一种激光加工方法,发明专利号:ZL201510469235X

[59]邓时累,潘佐梅,刘斌,毛大英,李航,陈根余,陈燚,高云峰.一种换热板激光叠焊装置及方法,发明专利号:ZL2015102579121

[60]万虹,范国成,郑贤文,肖俊君,陈根余,陈燚,高云峰.优化蜂窝圈生成顺序的方法和装置,发明专利号:ZL2015101886762

[61]李建,周桂兵,陈根余,陈燚,高云峰.激光器控制方法和系统及激光器装置、激光加工设备,发明专利号:ZL201510109466X

[62]郝大伟,肖俊君,陈根余,陈燚,高云峰.一种可同时观察焊接熔池及焊件表面的方法,发明专利号:ZL2015100978485

[63]段江涛,邓超,向水平,陈根余,陈燚,高云峰.一种管材弯曲度补偿方法及激光切割装置,发明专利号:ZL2015100503024

[64]段江涛,邓超,向水平,陈根余,陈燚,高云峰.一种椭圆管的找正方法及激光切割装置,发明专利号:ZL2015100501207

[65]肖武勇,邓超,向水平,陈根余,陈燚,高云峰.一种激光飞行切割方法及系统,发明专利号:ZL2015100370342

[66]邓时累,郑贤文,张奎,刘斌,毛大英,陈根余,陈燚,高云峰.一种激光焊缝同轴吹气保护装置及应用方法,发明专利号:ZL2014108179791

[67]李栋全,段林勇,唐景龙,陈根余,陈燚,高云峰.一种汽车拨叉激光焊接装置,发明专利号:ZL2014107850327

[68]范国成,万虹,郑贤文,肖俊君,陈根余,陈燚,高云峰.激光器及其激光切割头,发明专利号:ZL2014107853876

[69]赵维安,梁剑寒,陈根余,陈燚,高云峰.激光器电源水冷散热器以及激光器电源,发明专利号:ZL2014106933144

[70]杨小玲,任巨海,唐景龙,陈根余,陈燚,高云峰.叶轮叶片与叶轮上板的激光焊接方法及其装夹方法、夹具,发明专利号:ZL2014106637649

[71]黎友,邓超,向水平,陈根余,陈燚,高云峰.一种复合加工中采用CCD重拾工件坐标方法,发明专利号:ZL2014106398065

[72]贺泓铭,杨小玲,张奎,唐景龙,陈根余,陈燚,高云峰.激光拼焊设备和激光拼焊方法,发明专利号:ZL2014104728094

[73]魏宁,李建,周桂兵,陈根余,陈燚,高云峰.一种高功率CO2激光器的快速启动系统及方法,发明专利号:ZL2014103871574

[74]王方,张莹,尹博,唐景龙,陈根余,陈燚,高云峰.送粉机构,发明专利号:ZL2014103217015

[75]魏宁,刘晋,卢洪湖,周桂兵,陈根余,陈燚,高云峰.径向偏振激光系统,发明专利号:ZL201410155048X

[76]魏宁,刘晋,卢洪湖,周桂兵,陈根余,陈燚,高云峰.激光器谐振腔,发明专利号:ZL2014101560890

[77]姚晓晖,李健,肖俊君,陈根余,陈燚,高云峰.一种激光切割头的辅助气体流道及其设计方法,发明专利号:ZL2014101314222

[78]范国成,万虹,肖俊君,陈根余,陈燚,高云峰.一种龙门式激光切割机床的设计方法,发明专利号:ZL2014101285889

[79]万虹,范国成,肖俊君,陈根余,陈燚,高云峰.一种激光切割机床的结构设计方法,发明专利号:ZL2014101285906

[80]李栋全,刘斌,段东磊,唐景龙,陈根余,陈燚,高云峰.可变焦激光焊接设备及其吹气保护装置、吹气保护方法,发明专利号:ZL2014101274418

[81]彭硕飞,何自权,陈武青,周桂兵,陈根余,陈燚,高云峰.二氧化碳激光装置及其脉冲发生器,发明专利号:ZL2014100283250

[82]魏宁,陈永兴,陈燚,陈根余,周桂兵,卢洪湖,高云峰.激光器及其光斑调节组件,发明专利号:ZL2013106762606

[83]李建,周建平,周桂兵,陈根余,陈燚,高云峰.气体激光器、气体激光器气路系统及其防油耗控制方法,发明专利号:ZL2013106702662

[84]邓时累,朱科龙,姚晓晖,张奎,陈根余,陈燚,高云峰.激光焊缝侧吹保护装置、焊接设备及焊接方法,发明专利号:ZL2013105661839

[85]梁晓华,谭春升,陈根余,陈燚,高云峰.一种电源器及其模拟调试电路,发明专利号:ZL2013102203237

[86]邓时累,张明军,唐景龙,陈根余,陈燚,高云峰.激光焊接装置及焊接方法,发明专利号:ZL2013101254104

[87]李洪良,梁晓华,谭春升,兰炳立,陈根余,陈燚,高云峰.一种交流供电控制系统,发明专利号:ZL201310067464X

[88]余锦望,赵伟红,向水平,陈根余,陈燚,高云峰.PA数控系统与外部器件之间的通信方法和装置,发明专利号:ZL2013100434449

[89]吴树豪,卢洪湖,彭金明,陈根余,陈燚,高云峰.显示激光器功率的方法和系统,发明专利号:ZL2013100434307

[90]万虹,肖俊君,范国成,陈根余,陈燚,高云峰.激光切割机的横梁设计方法,发明专利号:ZL2013100432994

[91]李建,彭金明,詹敏,陈根余,陈燚,高云峰.抑制气体激光器的谐振腔内油污染的方法,发明专利号:ZL2013100250676

[92]王观东,赵剑,罗贵长,陈根余,陈燚,高云峰.激光切割机单机自动上下料装置及方法,发明专利号:ZL2013100234211

[93]梁晓华,谭春升,张选择,赵维安,陈根余,陈燚,高云峰.多路输出自均流电源控制电路,发明专利号:ZL2013100076307

[94]姚晓晖,肖俊君,卢洪湖,陈根余,陈燚.用于轴快流气体激光器的放电管,发明专利号:ZL2012105627462

[95]黄树金,罗贵长,赵剑,陈根余,陈燚,高云峰.激光加工设备及利用该设备的加工方法,发明专利号:ZL2012102707982

[96]欧阳征定,向水平,邓超,侯勇,陈根余,陈燚,高云峰.一种Z轴空行程仿形控制方法、系统及激光切割机,发明专利号:ZL2011103662880

奖励与荣誉

[1]中厚板及难焊材料激光焊接与复杂曲面曲线激光切割技术及装备,国家科技进步二等奖,排名第一

[2]享受国务院政府特殊津贴专家,个人

[3]修“槽”强“芯”-半导体晶圆倒角工具的微槽智能激光加工,全国大学生挑战杯一等奖,第一指导教师

[4]世界独创半导体晶圆倒角工具的微槽智能激光加工机,全国大学生创新大赛银奖,第一指导教师

[5]修“槽”强“芯”-半导体晶圆倒角工具的微槽智能激光加工,湖南省挑战杯特等奖,第一指导教师

[6]半导体晶圆倒角工具开微槽领航者,湖南省互联网+一等奖,第一指导教师

[7]厚板、难焊材料激光焊接与复杂曲面曲线激光切割关键技术及系列装备,中国机械工业科技奖进步一等奖,排名第一

[8]高功率激光三维切割焊接与轴快流激光器的关键技术及应用,教育部科学技术进步二等奖,排名第一

[9]中国产学研合作创新(个人)奖,个人

[10]高功率轴快流激光器与激光加工装备研发及产业化,中国产学研合作创新成果奖,排名第一

[11]超硬磨料对YAG激光吸收系数的测定及数值模拟计算,湖南省优秀硕士论文,指导教师

[12]声光调Q YAG脉冲激光修整超硬磨料砂轮的试验研究,湖南省优秀硕士论文,指导教师

[13]现代制造业多学科知识集成人才培养,湖南省教学成果一等奖,排名第二

[14]桁架式折叠准封离型切割与焊接用1kW级二氧化碳激光器,湖南省科技成果一等奖,排名第二

[15]科学中国人年度人物,个人

[16]三维五轴数控激光机床系统设计,好设计银奖,排名第一

[17]卓越工程师,个人

[18]地方级领军人才,个人

[19]国家级领军人才,个人

[20]数控光纤激光切割机,中国好设计银奖,排名第一

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