靳刚-机械工程学院

硕士生导师简介

靳刚

日期:2024年05月06日 12:47 来源: 作者:

姓名:

靳刚

系别:

机械制造系

职称:

教授/硕导

职务:

办公室:

数控楼205

电话:

13602107544

Email

Jgang1982@163.com

通讯地址:

天津市河西区大沽南路1310

 

教育背景:

20137 天津大学 振动与控制 博士学位

研究方向:

1. 精密/超精密加工技术

2. 薄壁件高效高精加工

3. 无人机飞行智控;

课程教学:

机械制图

学术兼职:

中国机械工程学会机床专业委员会委员

 

 

 

 

 

 

 

 

 

奖励及荣誉:

[1] 2025年 新一代运载火箭大型薄壁件高效高精数控加工关键技术 天津市科技进步二等奖;

[2] 2022年 复杂薄壁结构件高效精密加工过程控制关键技术及应用 中国产学研合作创新与促进奖—产学研合作创新成果奖;

[3] 2025全国三维数字化创新设计大赛,“递物侠”手动机器人,指导教师,天津赛区一等奖;

[4] 2024年全国大学生机器人大赛RoboMaster2025 机甲大师高校联盟赛(上海站),指导教师,全国三等奖;

[5] 2024年全国三维数字化创新设计大赛,抛射矿石机器人,指导教师,全国总决赛一等奖;

[6] 2021年全国三维数字化创新设计大赛,智能物流无人机,指导教师,天津市一等奖;

[7] 2019年 天津市高校“中青年骨干创新人才培养计划”入选;

[8] 2016年 天津市“131”创新型人才培养工程第二层次入选。

 

 

 

 

 

 

 

 

 

 

 

代表性

科研项目:

[1] 国家青年科学基金:复杂薄壁曲面零件铣削过程振动主动控制的理论与方法研究(51405343), 2015.01-2017.12, 主持,已结题;

[2] 天津市自然科学基金(面上项目):超声-电塑复合能场辅助碳化硼陶瓷磨削机理与表面完整性研究(25JCYBJC00350), 2025.4-2028.4, 主持,在研

[3] 内蒙古自然科学基金(面上)基于切削液射流的钛合金薄壁件铣削振动变形控制理论与方法研究2024MS05006),2024.4-2027.3,排名第2在研;

[4] 天津市自然科学基金(面上项目):钛合金复杂薄壁件超声辅助铣削过程变形和振动控制理论与关键技术研究(20JCYBJC00490), 2020.04-2023.4, 主持,已结题;

[5] 天津市教委科研计划项目(一般项目):钛合金薄壁件切削变形振动预测及其控制方法研究(2020KJ111), 2020.12-2023.12, 主持,已结题;

[6] 国家自然科学基金(面上项目):钨合金电塑性变形机理与电脉冲辅助切削技术研究(52175431),2022.01-2025.12,排名第2已结题

[7] 天津市教委:天津市高校“中青年骨干创新人才培养计划”,2020.03-2023.3,主持

[8] 天津市自然科学基金(青年项目):薄壁件铣削振动主动与被动协同控制方法与参数优化(15JCQNJC05000), 2015.04-2018.4, 主持,已结题;

[9] 天津市企业科技特派员项目:超声辅助薄壁件铣削动态切削力建模及振动控制技术(19JCTPJC51900),2019.10-2020.09, 主持,已结题。

 

 

 

 

 

 

 

 

 

 

代表性论文

[1] Minghao Guo, Gang Jin*, et al. A Review of Plasma-Assisted Machining of Difficult-to-Machine Materials: Mechanisms, Processes, and Surface Integrity. The International Journal of Advanced Manufacturing Technology. 2026.5 .已录用. (SCI, 中科院三区,JCR2)

[2] Yonglin Min, Gang Jin*, et al. Investigation on the Effects of Synergistic Coupling between Ultrasonic Elliptical Vibration and Cold Plasma Assistance on Surface Integrity during Precision Turning of Tungsten Alloys. Precision Engineering. 2016.3. 已录用. (SCI, 中科院二区,JCR1)

[3] Mengpan Hu, Gang Jin*, et al. Deformation behaviour and constitutive analysis of tungsten alloys under electroplastic effects. Advanced Engineering Materials. 2026.2. 已录用. ( SCI, 中科院三区,JCR2)

[4] Shaokun Luo, Gang Jin*, et al. Multi-objective optimization for ice-assisted drilling of Ti-6Al-4V alloy thin-walled parts. Journal of Materials Engineering and Performance. 2025.12 已录用( SCI, 中科院四区,JCR3)

[5] Desheng Li, Gang Jin*, et al. Mechanical properties and JC constitutive modification of TNZ1313 titanium alloys considering high strain rates and high/low temperatures. Journal of Materials Engineering and Performance. 2025.12. 已录用. ( SCI, 中科院四区,JCR3)

[6] Yipu Bian, Gang Jin*, et al. Investigation on the Milling Performance and Mechanisms of Tungsten-Based Alloys under lce Freezing Conditions: Cutting Force Modeling, Surface Integrity &Tool Wear. International Journal of Refractory Metals and Hard Materials. 2025.12. 已录用. ( SCI, 中科院二区,JCR1)

[7] Shaokun Luo, Gang Jin*, et al. Dynamic mechanical properties and constitutive model of SiC/Al considering high strain rate and high / low temperatures [J]. Advanced Engineering Materials. 2025. (SCI,中科院三区,JCR2)

[8] Xin Zhang, Zhanjie Li, Gang Jin*, et al. Research on the efect of ultrasonic‑electric pulse composite milling on the machining performance of tungsten alloy [J]. The International Journal of Advanced Manufacturing Technology. 2025, 138(11-12): 5521-5536.SCI, 中科院三区, JCR2)

[9] Wang Guangyu, Jin Gang*, et al. Study on the effect of ice-cold constraint on the machining accuracy and quality of AZ31B magnesium alloy thin-walled parts [J]. Proceedings of the iMeche, Part B: Journal of Engineering Manufacture. 2025.4. (SCI, 中科院四区)

[10] Huaixin Lin, Gang Jin*, et al. Investigation on the machining mechanism and quality of an ice-coated drilling method for thin-walled parts[J]. Journal of Materials Processing Technology, 2025: 118743. (SCI, 中科院1TOPJCR1)

[11] Yuanhao Ma, Gang Jin*, et al. Investigation on two-dimensional ultrasonic vibration plane turning method based on elliptical plane swinging. strategy along short axis [J]. Precision Engineering. 2024, 91:185-198. (SCI,中科院二区,JCR1)

[12] Yipu Bian, Gang Jin*, et al. Mechanical properties and JC constitutive modification of tungsten alloys under highstrain rates and high/low temperatures [J]. Materials Today Communication. 202441110542. (SCI, 中科院三区,JCR2)

[13] Yuanhao Ma, Zhanjie Li, Gang Jin*, et al. Investigation on Aluminum Alloy Reflector Mirror Processing Technology Combining Ultrasonic Rolling and Single Point Diamond Turning [J]. Micromachines, 2024, 15, 1527. https://doi.org/10.3390/. (SCI, 中科院三区,JCR2)

[14] Huaixin Lin, Gang Jin*, et al. Modified constitutive models and cutting finite element simulation of Ti-6Al-4V alloy at cryogenic [J]. Proc IMechE Part C: J Mechanical Engineering Science, 2024.7, https://doi.org/10.1177/095440622412663. (SCI, 中科院四区JCR3)

[15] Huaixin Lin, Gang Jin*, et al. Mechanical Properties and Constitutive Model of TC4 Titanium Alloy at Cryogenic [J]. Journal of Materials Engineering and Performance, 2024, 3313731–13743. (SCI, 中科院四区,JCR3)

[16] Qiyun Zhan, Gang Jin*, et al. Study on milling flatness control method for TC4 titanium alloy thin-walled parts under ice fixation [J]. Proc IMechE Part C: J Mechanical Engineering Science, 2024, 238(6): 2018-2033. (SCI, 中科院四区,JCR3)