黄凯

日期: 2026-01-23

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       姓名:黄凯               职称:讲师

邮箱:huangkai@ncu.edu.cn

导师类型:无         主讲课程:工程制图

个人主页:无

研究方向:

主要从事超精密加工技术、难加工材料能场辅助超精密加工、光学玻璃模压成型技术、微纳结构表面加工等方面的研究工作。

教育经历:

2020.09-2025.06 华中科技大学 机械工程,工学博士

2024.08-2024.11 香港理工大学 联合培养,工学博士

2016.09-2019.06 中南大学     机械工程,工学硕士

2012.09-2016.06 中南大学 机械设计制造及其自动化,工学学士

工作履历:

2025.6–至今,南昌大学先进制造学院,讲师

学术兼职:

个人荣誉:

智行奖学金、优秀研究生

主要业绩:

科研项目:

1. 国家自然科学基金杰出青年科学基金项目,超精密切削工艺与装备,2023.01-2027.12 ,主要参与

2. 工业与信息化部制造业高质量发展专项,航天光学元件微激光辅助加工系统性能提升与应用推广,2020.06-2024.05,主要参与

学术论文:

(1) Kai Huang, Z. Shen, et al. Investigation on the machinability of nitriding mold steel by applying in-situ laser assisted diamond cutting. J. Manuf. Process., 2022;84:149–161. (SCI 一区/Q1 IF: 6.1)

(2) Kai Huang, Zhengding Zheng, et al. Microstructure characterization and high-temperature wear behavior of plasma nitriding mold steel, Surf. Coat. Technol. 2024;492:131210. (SCI 二区TOP/Q1 IF: 5.3)

(3) Kai Huang, Zhengding Zheng, et al. Investigation on the optimal ultra-precision machining of nitriding mold steel by in-situ laser assisted diamond cutting, Proc. Inst. Mech. Eng. Part B J. Eng. Manuf. 2024. (SCI 三区/Q2 IF: 1.9)

(4) Kai Huang, Ripeng Jiang, et al. Effects of High-Intensity Ultrasound on Microstructure and Mechanical Property of In situ TiB2/2A14 Composites. Metals, 2019, 9(11):1210.(SCI 三区/Q2 IF: 2.6)

(5) Zhengding Zheng, Kai Huang, et al. An analytical force and energy model for ductile-brittle transition in ultra-precision grinding of brittle materials, Int. J. Mech. Sci. 2022, 220: 107107. (SCI 一区/Q1 IF= 7.3)

(6) Zhengding Zheng, Kai Huang, et al. Analytical modeling of subsurface damage and material removal energy in elliptical vibration cutting of micro-structures, J. Mater. Res. Technol. 2023, 25: 5674-5692. (SCI 一区/Q1 IF="6.4)

(7) Zhengding Zheng, Kai Huang, et al. Cutting depth-oriented ductile machining of infrared micro-lens arrays by elliptical vibration cutting, Opt. Express, 2023. (SCI 二区/Q2 IF= 3.8)

(8) Jianguo Zhang, Zhengding Zheng, Kai Huang et al. Field-assisted machining of difficult-to-machine materials. Int. J. Extreme Manuf, 2023. (SCI 一区/Q1 IF= 14.7)

(9) 许剑锋, 黄凯, 郑正鼎, 等, 难加工材料场辅助超精密加工研究, 中国科学:技术科学 52 (2022) 829–853

发明专利:

(1) 许剑锋;黄凯;张建国,等,一种六面体棱镜的高精度加工装置与方法, ZL 202211479636.X

(2) 许剑锋;黄凯;张建国,等,一种原位离子注入改性-金刚石切削复合加工方法及系统, CN202410313681.0

(3) 张建国;许剑锋;李江;黄凯,等,一种机床动态轮廓误差的补偿装置及方法, ZL 202110035218.0

(4) 许剑锋;骆易葳;郑正鼎;张建国;黄凯,等,一种选择性辅助加工视觉系统的时空标定方法, ZL202211311389.2

(5) 许剑锋;林创挺;陈肖;郑正鼎;黄凯,等,一种基于原位激光高频调控技术的选择性加工系统,ZL 202111205012.4

(6) 许剑锋;张建国;罗文宇;黄凯,等,六面体棱镜实时在线切削测量装置及加工误差控制方法, CN202410099316.4

(7) Jianfeng Xu,Zhengding Zheng, Jianguo Zhang, Kai Huang, et al. A selective field-assisted machining system, PCT/CN2022/119848. (授权)