教师队伍

硕士生导师

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  • 朱兆聚

    性 别 :男

    出生年月:1988年10月

    系 别:机电工程系

    学 位:工学博士

    职 称:副教授/硕士生导师

  • 详细资料


    联系方式

    通讯地址:福建省福州市福州地区大学新区学园路2号

    邮编:350116

    邮箱:zhaojuz@fzu.edu.cn

    教育工作经历

    2023.09-至今 福州大学 机械工程及自动化学院 副教授

    2019.07-2023.08 福州大学 机械工程及自动化学院 讲师,海外旗山学者

    2019.12-2023.05 中国科学院自动化研究所 博士后

    2016.09-2018.10 密西根大学安娜堡分校 工程学院 博士联合培养

    2012.07-2019.06 山东大学 机械工程学院 博士(硕博连读)

    社会兼职

    1.美国机械工程师协会(ASME)会员

    2.中国机械工程学会会员

    3.福建省中医药学会精准医学分会委员、会员

    4.福建省康复技术工程学会会员

    5.Journal of Materials Processing Technology、Journal of Manufacturing Processes、International Journal of Advanced Manufacturing Technology、Advanced Composites Letters等国际期刊审稿人

    研究领域

    1.高性能医疗器械开发及装备制造

    2.医疗手术辅助系统设计与开发

    3.高性能加工技术及智能制造

    主要科研项目

    1.国家自然科学基金青年项目,2023-2025,主持

    2.福建省卫健委科技计划项目,2023-2025,主持(福大)

    3.福建省自然科学基金面上项目,2021-2024,主持

    4.福建省中青年教师教育项目,2020-2022,主持

    5.高效洁净机械制造教育部重点实验室开放基金,2020-2022,主持

    6.福州大学海外旗山学者科研启动基金,2020-2023,主持

    7.横向委托项目,轴承钢典型组织的智能识别与评级研究,2022-2023,主持

    8.横向委托项目,基于斜面锪窝的高锁螺栓安装齐平度研究,2021-2022,主持

    9.专利转化项目,“一种血管钙化组织高效去除装置”等7件专利权转让,2022-2024,主持

    10.横向委托项目,智能医用临床机器人研发,2022-2026,主研

    11.航天科技集团应用创新项目,基于数据驱动的数控加工虚实映射技术研究,2021-2023,主研

    12.教育部产学合作协同育人项目,基于虚拟现实的医工交叉课程建设与教学,2021-2022,主持

    代表性论著

    近年部分论文(一作或通讯):

    1.Zhu Z#, Lin Z, Huang J, Zheng L, He B. (2023) A digital twin-based machining motion simulation and visualization monitoring system for milling robot.The International Journal of Advanced Manufacturing Technology,127:4387-4399.

    2.Zhu Z#, Kang R, Huang J, Zhu Y, Sun X. (2023) Investigation on cutting damage mechanism of carbon fiber reinforced polymer based on macro/microscopic simulation.The International Journal of Advanced Manufacturing Technology,127:3585-3597.

    3.Gao C, Zhu Z#, Huang Z, Chen L, Lu L, Fang M, Liu Y, et al. (2023) Performance of novel 3D printing tools in removing coronary-artery calcification tissue.Bio-Design and Manufacturing,6:390-404.

    4.Huang Z, Zhu Z#, Yu W, Gao C, He B. (2023) Feasibility Analysis of Novel Grinding Device With PVDF Sensor in Coronary Rotational Atherectomy.IEEE Sensors Journal,23:21894-21902.

    5.Zhu Z#, Chen L, Yu W, Gao C, He B. (2023) Numerical Analysis of Stress Force on Vessel Walls in Atherosclerotic Plaque Removal through Coronary Rotational Atherectomy.Micromachines,14:2148.

    6.Zhu Z#, Sun X, Guo K, Sun J, Li J. (2022) Recent Advances in Drilling Tool Temperature: A State-of-the-Art Review.Chinese Journal of Mechanical Engineering,35:148.

    7.Zhu Z#, Zhu Y, Sun X, Gao C, Lin Z, He B. (2022) 3D finite element simulation for tool temperature distribution and chip formation during drilling of Ti6Al4V alloy.The International Journal of Advanced Manufacturing Technology, 121:5155-5169.

    8.Zhu Z#, Gao C, Huang Z, Chen L, He B. (2022) Evolution of novel grinding tool in removing coronary artery calcification tissue process.Medical Engineering & Physics,109:103893.

    9.Lin W,Zhu Z#, He B, Liu Y, Hong W, Liao Z. (2022) A novel virtual reality simulation training system with haptic feedback for improving lateral ventricle puncture skill.Virtual Reality, 26:399-411.

    10.Shi J, Liu S,Zhu Z#, Deng Z, Bian G, He B. (2022) Augmented reality for oral and maxillofacial surgery: The feasibility of a marker‐free registration method.The International Journal of Medical Robotics and Computer Assisted Surgery. doi: 10.1002/rcs.2401

    11.Huang X, Zhao F, Sun Z,Zhu Z#, Mei X. (2020) A Novel Condition Monitoring Signal Analysis Method of Numerical Control Machine Tools in Varying Duty Operation.IEEE Access, 8:72577-72584.

    12.Zhou C, Jiang Z, Sun C,Zhu Z#. (2020) The Monitoring of Milling Tool Tipping by Estimating Holder Exponents of Vibration.IEEE Access, 8:96661-96668.

    13.Zhu Z#, Liu K, Sun J, Li J. (2019) Investigation on performance characteristics and metallographic transformation on drilling aluminium/titanium sandwich.Journal of Sandwich Structures & Materials,21:1578-1594.

    14.Zhu Z#, Guo K, Sun J, Li J, Liu Y, Zheng Y, Chen L. (2018) Evaluation of novel tool geometries in dry drilling aluminium 2024-T351/titanium Ti6Al4V stack.Journal of Materials Processing Technology,259:270-281.

    15.Zhu Z#, Guo K, Sun J, Li J, Liu Y, Chen L, Zheng Y. (2018) Evolution of 3D chip morphology and phase transformation in dry drilling Ti6Al4V alloys.Journal of Manufacturing Processes,34:531-539.

    专利:

    1.一种血管钙化组织高效去除装置,专利号:ZL202023023250.7;

    2.微力传感器标定装置,专利号:ZL202123117879.2;

    3.用于手术器械的PVDF微力传感器,专利号:ZL202122839028.2;

    4.基于钙化组织去除、回收及降温一体化的心血管介入手术装置,专利号:202121175559.X;

    5.基于工件二维振动的超声椭圆振动钻削装置,专利号:ZL202120859470.9;

    6.超声振动复合钻削装置,专利号:ZL202120624489.5;

    7.基于Logistic曲线具有S型刀刃的断屑钻头,专利号:ZL201610602257.3;

    8.一种钻铰锪一体化刀具,专利号:ZL201610224852.8;

    9.一种具有阶梯刃型的断屑钻头,专利号:ZL201620801116.X;

    10.一种变螺旋槽双锥角叠层结构制孔一体化刀具,专利号:ZL201710216075.7;

    主要获奖情况

    1.福建省科技进步三等奖(4/5)

    2.福建省引进高层次C类人才

    3.江苏省句容市“福地英才”人才

    4.福州大学厦航奖教金

    5.福州大学机械工程及自动化学院优秀教师奖

    6.福建省省级个人科技特派员

    7.江苏省科技镇长团荣誉团员

    8.福州大学旗山学者(海外)