胡俊教授
发布人:张贯尧  发布时间:2021-05-25   浏览次数:4996

 

姓名

胡俊

职称

教授,博士生导师

所在团队

智能系统与机器人研究中心

办公电话

67792111

通讯地址

东华大学2号学院楼2402

电子邮箱

hujun@dhu.edu.cn

教育背景

1992.09-1996.07 安徽机电学院 机制工艺及设备专业  学士

1996.09-1999.02 合肥工业大学 机械制造及自动化专业 硕士

1999.04-2002.07 上海交通大学 机械制造及自动化专业 博士

工作经历

2002.07-2004.08  上海交通大学 机械与动力工程学院 讲师

2004.09-2017.03  上海交通大学 机械与动力工程学院 副教授

2012.08- 2017.03 上海交通大学 机械与动力工程学院 博士生导师

2017.04- 至今  东华大学   机械工程学院教授,博士生导师,高档数控装备研究所所长

2021.02- 至今  东华大学   人工智能研究院教授,博士生导师,副院长

出访及挂职经历

2010.09-2011.09   加拿大维多利亚大学机械工程系访问学者

研究方向

1、智能系统与机器人

2、激光精细加工

科研项目

12016.012019.12,国家自然科学基金面上项目“碳纤维增强复合材料紫外皮秒激光铣削机理与工艺规划研究”,负责人

2、2023.04-2026.03,上海自然科学基金面上项目“植入物氧化石墨烯涂层抗菌-促成骨微纳结构飞秒激光形性协同加工方法”,负责人

32017.072019.12,上海市经济和信息化委员会课题“多品种少批量零件智能加工车间的工业互联网创新应用”,负责人

42018.01-2020.12,中央高校基本科研业务费重点课题“碳纤维复合材料短脉冲激光制孔工艺与质量控制方法”,负责人

5、2019.01-2023.12,马鞍山博望高端数控机床研究中心建设(400万/年)。承担“大直径锯片数控高速磨床设计与优化”、“智能立体仓库与产线物流系统设计与调试”、“碳纤维增强复合材料3D打印机研制”、“多功能激光柔性加工装备设计” 、“机器人柔性打磨装置设计与调试” 和“焊接/打磨机器人自动编程软件开发”等课题,负责人

6、2023.05-2026.04,均诺-东华大学智能制造联合研究中心(100万/年)。承担“基于视觉的焊接质量检测”、“智能产线物流系统设计”等课题,负责人

72017.62022.12,企业委托课题:“基于线结构光的零件缺陷水下检测装置研究”、“水下视觉测量控制模块软件开发”、“遥操作扫查机器人动力学分析与运动控制软件”和“扫查机械手校准标定软件(VS+OpenGL平台)”等课题,负责人

8、2022.09-2023.08,企业委托课题:“路灯智能控制系统”,负责人

92021.06-2022.05,企业委托课题:“多用炉全自动生产线无接触通信及供电系统开发”,负责人

102021.01-2021.12,企业委托课题:“复杂产品切削装夹系统刚度建模与云架构搭建”,负责人

112021.01-2021.12,企业委托课题:“打磨机器人软件开发”,负责人

122020.01-2020.12,企业委托课题:“自动落筒软件开发”,负责人

代表性论文专著

2023年:

1、 YifeiWang, JunHu*, et al.Influence of femtosecond laser pulse sequence on the morphology and roughness of titanium surface micro-patterns. Journal of manufacturing processes (Accept)

2、Wen Zhao, Zhou Yu, Jun Hu*. Simulation and experimental study of nanosecond laser ablation groove on titanium alloy. Journal of manufacturing processes (Accept)

3、Jiuru Lu, Luyao Xu, Haojie Xu, Kangmei Li, Jun Hu*. Buckling analysis of variable-stiffness composite truncated elliptical rotary shell under external hydrostatic compression. Composite Structures. 2023,307:116613.

4、Jing Zhang, Zhou Yu, Jun Hu*. A study of bionics micro-textures on the surface of HA bio-coatings prepared by nanosecond laser. Ceramics International, 2023, 49: 11999-12011

5、Wen Zhao, Jing Zhang, Zhou Yu, Jun Hu*. Effects of bioinspired leaf vein structure on biological properties of UV laser patterned titanium alloy. Surface and Interface, 2023, 38: 102785

6、王一飞, 虞宙, 李康妹, 胡俊*.钛合金微沟槽的纳秒激光烧蚀工艺研究. 东华大学学报(自然科学版), 2023, 49: 84-94

7、 Jiaming Gong, Kangmei Li, Jun Hu, Hao Chen, Ge Wu *, Qianqian Cao * Application of Stacking Ensemble learning in Clinical Fitting of Orthokeratology Lens for Myopia Correction,Journal of Donghua University


2022年:

1、 Kong Weicheng, Yu Zhou, Hu Jun*. Nanostructures and electrochemical performances of Cr0.4Al0.4N0.2 me diumentropy and Cr0.9N0.1 lowentropy ceramic coatings by DFT calculationCorrosion Science,2022, 204: 110375

2Haojie Xu, Jiuru Lu, Kangmei Li, Jun Hu*. Design and analysis of composite conical shell based on fiber placement process. Journal of Mechanical Science and Technology,2022, 36 (3): 1427–1436

3、ChunfangGuo, MeijuZhang, JunHu*,Fabrication of hierarchical structures on titanium alloy surfaces by nanosecond laser for wettability modification, Optics & Laser Technology, 2022.148:107728

4、Jiuru Lu, Haojie Xu, Zhenhua Jiang, Kangmei Li*, Jun Hu*Design of a composite truncated elliptical rotary shell based on variable-angle trajectoriesComposite Structures, 2022.294(15):115772

5Kong Weicheng, Li Kangmei, Hu Jun*. Immersion corrosion behavior, electrochemical performance and corrosion mechanism of subsonic flame sprayed FeCoCrMoSi amorphous coating in 3.5% NaCl solution. International Journal of Hydrogen Energy, 2022.47(10):6911-6923

6Kong weicheng, Yu Zhou, Hu Jun*. Characterization and Tribological Properties of Titanium Nitrides in Situ Fabricated on Ti6Al4V Alloy by Glow Discharge Plasma Nitriding. Journal of Wuhan University of Technology-Mater 2022.37:7684

7、 KangmeiLi,XingzheHe,LeLi,LiuyongYang,JunHu*,Residual stress distribution of aluminium-lithium alloy in hybrid process of friction stir welding and laser peening,Optics & Laser Technology ,2022.152:08149

8Xu L, Lu J, Li K*, Hu J*. Experimental study of CFRP laser surface modification and bonding characteristics of CFRP/Al6061 heterogeneous joints. Composites Structures, 2022.283(3), 115030.

9Wen Zhao, Qianqian Cao, Jun Hu*. Response surface and corrosion behavior analysis of nanosecond laser patterned ZK60A magnesium alloy. Optics and laser technology, 2022, 145: 107501.

10、 Zhou Yu, Mengxin Duan, Jun Hu*, Hui Yang. Preparation of graphene oxide coatings on textured Ti6Al4V by laser micromachining and electrophoretic deposition for improved biocompatibility[J]. Optics & Laser Technology, 2022.154:108342

11、 Zhou Yu, Jing Zhang, Jun Hu*. Study on surface properties of nanosecond laser textured plasma nitrided titanium alloy[J]. Materials Today Communications, 2022.31: 103746

12、王一飞,虞宙,李康妹,胡俊.纳秒激光烧蚀钛合金微坑型貌的数值模拟分析,中国激光, 2022.08(49):0802008.


2021年:

1Xu L, Lu J, Li   K, Hu J*. Removal   mechanism of CFRP by laser multi direction interaction. Optics and Laser   Technology, 2021, 143(12):107281

2Xu L, Lu J, Li   K, Hu J*. Study on the mechanism   of inhomogeneous micro damage in short pulse laser processing of CFRP.   Journal of Reinforced Plastics and Composites, 2021, 40(15-16):568-576.

3Kong Weicheng, Yu ZhouHu Jun*,Effect of  carburizing treatment on microstructural, mechanical and tribological performances   of Cr doped DLC coating deposited on Ti6Al4V alloy, Ceramics   International,2021.47(24): 34425-34436

4Kong WeichengLi KangmeiHuJun*Effects of laser power on microstructure and   friction–wear performances of direct energy deposited ZrO2–8%Y2O3–NiCoCrAl   coatings on Ti6Al4V alloyOptics &   Laser Technology2021.142(10):   107214

5Kong Weicheng,   Li Kangmei, Hu Jun*. TEM structure, nanomechanical property   and adhesive force of magnetron sputtered CrDLC coating on nitrided Ti6Al4V   alloy. The Journal of Physical Chemistry C, 2021, 125, 30, 16733–16745

6Kong Weicheng,   Yu Zhou, Hu Jun*. Electrochemical performance and corrosion   mechanism of Cr–DLC coating on nitrided Ti6Al4V alloy by magnetron   sputtering. Diamond and related materials, 2021, 116: 108398

7Chunfang Guo,   Meiju Zhang, Jun Hu*. Icing delay of sessile water droplets on   superhydrophobic titanium alloy surfaces. Colloids and Surfaces A:   Physicochemical and Engineering Aspects. 2021, 621: 126587

8Zhang Jing,   Qianqian Cao, HuJun*, Corrosion, wear and biocompatibility  of  hydroxyapatite bio-functionally graded coating on titanium alloy surface   prepared by laser cladding, Ceramics International, 2021.47(17): 24641-24651

9Zhang Jing, Li   Kangmei, Hu Jun*. Performances investigation of Ti6Al4V   alloy modified by plasma nitriding + plasma enhanced chemical vapor   deposition and laser remelting process in simulated body fluid. Metals and   Materials International, 2021, 27 (11): 757-4767

10Jing Zhang, Zhou   Yu, Jun Hu*. Effect of   nanosecond laser textured ablation on performance of Ti6Al4V alloy prepared  by composite nitriding process. Metallurgical and Materials Transactions A.   2021, 52 (8): 3289-3301.

11Yifei Wang, Jing   Zhang, Kangmei Li, Jun Hu*, Surface characterization and   biocompatibility of isotropic microstructure prepared by UV laser. Journal of   Materials Science & Technology,2021.94(12):136-146

12Yifei Wang,   Zhou Yu, Kangmei Li, Jun Hu*, Study on the effect of surface   characteristics of short-pulse laser patterned titanium alloy on cell   proliferation and osteogenic differentiation, Materials Science and   Engineering: C, 2021.128(9): 112349

13Yifei Wang,   Meiju Zhang, Kangmei Li, Jun Hu*. Study on the surface properties and   biocompatibility of nanosecond laser patterned titanium alloy. Optics and   Laser Technology, 2021, 139: 106987.

14李康妹,何幸哲,蔡宇,胡俊.搅拌摩擦焊与激光冲击复合工艺应力场仿真.中国激光, 2021, 48 (18): 62-73


2020年:

1Z YuL XuW CaoJ Hu*, Study on   picosecond laser processing of blind holes in carbon fiber reinforced   plasticsApplied   Physics A2020.126(12):944

2Lu, J., Xu,   L., Hu, J*,Micromechanical analysis of the tensile deformation   behavior for 3D printed unidirectional continuous fiber reinforced   thermos-plastic composites, Journal of Mechanical Science and Technology,   2020.34 (12):5085-5092

3Meiju Zhang;   Chunfang Guo, Jun Hu*, One-step fabrication of flexible   superhydrophobic surfaces to enhance water repellency, Surface and Coatings   Technology, 2020.400(25):126155

4Zhou Yu, Jun   Hu*. Picosecond laser texturing on titanium alloy for biomedical implants   in cell proliferation and vascularization. Journal of Biomedical Materials   Research: Part B - Applied Biomaterials, 2020.108(4):1494-1504

5Yifei Wang,   Zhou Yu, Kangmei Li, Jun Hu*. Effects of Surface Properties of   Titanium Alloys Modified by Grinding, Sandblasting and Acidizing and   Nanosecond Laser on Cell Proliferation and Cytoskeleton. Applied Surface   Science, 2020.501(31): 144279.

6Kangmei Li, Yu   Cai, Zhou Yu, Jun Hu*. Formation mechanism of residual stress   hole under different pulse durations and shock pressure distributions in   Ti6Al4V alloy during laser peen texturing. Optics & Laser Technology,   2020, 130:106361.


2019年:

1Yifei   Wang, Jun Hu, Kangmei Li*. Defect control strategy of carbon fiber   reinforced polymer during nanosecond ultraviolet laser processing. Materials   Research Express, 2019. 6(8): 085608.

2Yifei Wang,   Zhou Yu, Xuran Guo, Jun Hu*. Surface Morphology of Modified   Titanium Alloy Affects Proliferation Stability of Bone Marrow Mesenchymal   Stem Cells. Surface and Coatings Technology, 2019. 366: 156-163.

3Kangmei Li,   Yifei Wang, Zhou Yu, Jun Hu*. Process mechanism in laser peen   texturing artificial joint material. Optics and Lasers in Engineering, 2019.   115: 149-160.

4Zhou Yu, Jun   Hu*, Kangmei Li. Investigating the multiple-pulse drilling on titanium   alloy in picosecond laser. Journal of Materials Processing Technology, 2019.   268: 10–17.


2018年:

1Zhou Yu,   Guangzheng Yang, Wenjie Zhang, Jun Hu*. Investigating the effect   of picosecond laser texturing on microstructure and biofunctionalization of   titanium alloy. Journal of Materials Processing Technology, 2018. 255:   129–136.

2Jun Hu*, Dezhi Zhu.   Experimental study on the picosecond pulsed laser cutting of carbon   fiber-reinforced plastics. Journal of Reinforced Plastics and Composites,   2018. 37(15): 993-1003.

3Jun Hu*, Hebing Xu   and Chao Li. Laser absorption of carbon fiber reinforced polymer with   randomly distributed carbon fibers. Laser Physics, 2018. 28: 036002.

4Jun Hu*, Dezhi Zhu.   Investigation of Carbon Fiber Reinforced Plastics Machining Using 355 nm   Picosecond Pulsed Laser. Applied Composite Materials, 2018. 25(3): 589–600.


2017年:

1Kangmei Li,   Dalei Jing, Jun Hu*, Xiaohong Ding, Zhenqiang Yao. Numerical   investigation of the tribological performance of micro-dimple textured surfaces under hydrodynamic lubrication. Beilstein Journal of Nanotechnology,   2017. 8: 2324-2338.

2Xu H, Hu   J*. Modeling of the material removal and heat affected zone formation in CFRP short pulsed laser processing. Applied Mathematical Modelling, 2017. 46:   354-364

3虞宙,胡俊*,张文杰.皮秒激光对医用钛合金植入物表面微加工及生物相容性的研究.中国激光, 2017. 44(01): 129-134.

教学工作

课程名称:数控技术与系统
授课对象:本科生三年级
学时数: 36
学分:2


课程名称:高性能制造理论与技术
授课对象:博士研究生
学时数: 36
学分:2

软件版权登记及专利

1、发明专利授权: 一种水下核燃料组件检测装置旋转中心标定的方法, CN201811243928.7

2、发明专利授权:激光切割过程中切缝气体流场结构的测试装置, 201210366251.2

3、发明专利授权:一种夹持板材进行激光加热成形的方法, 201210097863.6

4、发明专利授权:基于单片机的四轴运动控制卡, 200810037107.8

5、发明专利授权:用于高速数控加工轨迹拐角的速度平滑方法, 200710171873.9

6、发明专利授权:用于激光切割的超音速喷嘴, 200710044903.X

7、发明专利授权:数控鞋楦刀具磨刀机精确步进机构, 200610029683.9

8、发明专利授权:基于ARM的嵌入式运动控制卡, 200810036150.2

9、软件著作权登记:激光3D打印编程软件, 2015SR155052

10、软件著作权登记:三维激光加工自动编程软件,2010R11L070140

11、软件著作权登记:激光切割机床工艺参数数据库软件, 2008SR05958

12、软件著作权登记:保温设备集中监控系统软件, 2006SR17590

13、软件著作权登记:切割机数控系统, 2006SR17592

14、软件著作权登记:NewStar鞋楦数字化测量与数控加工控制软件, 2005SR00430


学术兼职

1、 纺织工业人工智能技术教育部工程研究中心,副主任

2、上海工业大数据与智能系统工程技术研究中心,副主任

3、上海市机器人学会,理事

4、中国光学学会激光加工专业委员会,委员

荣誉奖励

12016年,上海交通大学机械与动力学院最受欢迎教师奖-专业方向课程

22016年,非对称轴随动磨削工艺与装备核心技术及应用、上海市技术发明一等奖(排名第六)

32014、重大装备板类零件激光精密切割工艺与系列装备研制、中国机械工业科学技术奖三等奖(排名第二)

42013、复杂曲面零件五轴联动激光加工工艺与系列数控装备研制、上海市科学技术进步三等奖(排名第二)

52010、大台面数控激光切割机关键技术研究与系列产品开发、上海市科学技术进步二等奖(排名第二)

62008、激光高速切割关键技术与产业化、上海市科学技术进步三等奖(排名第二)