导师团队
焊接过程基础理论与焊接自动化团队
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  • 所属院系:材料科学与工程学院
  • 所属专业: 材料加工工程  、 材料与化工
  • 邮箱 : ymhuang26@tju.edu.cn
  • 工作电话 : -

团队简介

Team Introduction

团队共有4名教师, 25名研究生,是一支充满活力的队伍。团队负责人为杨立军教授,团队成员包括申俊琦教授、王志江副教授以及黄一鸣副教授,各位老师的研究背景互为补充,能够为学生的研究工作提供系统的指导。 近年来,团队获批国家自然科学基金9项,天津市重点基金、面上基金、以及科技重点支撑项目等12项,承担大型企业合作项目2项(经费分别为1241万和776万)以及重要国防科技项目3项。团队成员近五年在《Acta Materialia》、《‌International Journal of Machine Tools and Manufacture》、《Welding  Journal 》、《Materials & Design 》、《Journal of Materials  Science & Technology》、《Journal of Alloys and Compounds 》、《 Journal of Materials Processing Technology》、《Journal of Intelligent  Manufacturing 》等国内外期刊上发表论文147篇,其中SCI收录106篇。


  • 研究方向Research Directions
焊接电弧物理及过程控制基础理论 ,电弧焊接新方法与智能焊接技术,新材料及异种材料焊接,激光焊接及激光电弧复合焊接,机器人焊接与增材制造
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
团队展示

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材料科学与工程学院
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科研项目

近年来,团队获批国家自然科学基金9项,天津市重点基金、面上基金、以及科技重点支撑项目等12项,承担大型企业合作项目2项(经费分别为1241万和776万)以及重要国防科技项目3项。

科研项目如下:

一、各类基金项目

1.       国家自然科学基金项目,铝合金TIG +CMT复合热源焊接成形与控制基础研究 

2.       国家自然科学基金项目,深水钢悬链立管全位置焊接背面成形智能控制研究

3.       国家自然科学基金项目,球管相贯焊缝机器人焊接与控制基础理论研究        

4.       国家自然科学基金项目,等离子弧反翘机理与焊接熔透智能控制的研究        

5.       国家自然科学基金项目,超声传感弧焊焊缝跟踪系统工程应用的研究    

6.       国家自然科学基金项目,激光+双MIG/双MAG电弧复合热源特性与耦合机理研究

7.       国家自然科学基金项目,集成环列多丝熔化极电弧焊能量耦合机理及数字化智能控制策略研究

8.       国家自然科学基金项目,大直径重型运载火箭燃料贮箱2219铝合金焊接接头组织调控与性能提高的研究

9.       国家自然科学基金项目,GMAW-P熔池表面动态行为和熔透实时控制机理及策略研究

10.     国家自然科学基金项目,激光深熔焊等离子体波动行为及焊缝成形检测原理的研究

11.     国家自然科学基金项目,双丝电弧增材高强铝合金组织性能的丝/热联合调控机理

12.    天津市自然科学基金重点项目,变极性CMT+P焊接电弧行为与成形控制研究   

13.    天津市自然科学基金重点项目,金属增材制造激光加工过程光电检测技术研究     

14.    天津市基金项目,球管相贯焊缝机器人模拟仿真与控制基础理论研究    

15.    天津市基金项目,弧焊电源的数字化控制技术                        

16.    天津市基金项目,焊缝自动跟踪中智能控制技术的研究        

17.    天津市基金项目,新型自保护药芯焊丝的研制

18.    天津市基金项目,大功率激光-脉冲电弧复合热源的物理特性研究

19.    天津市基金项目,三熔化极电弧复合热源焊接的研究

20.    天津市基金项目,激光再制造非平衡冶金过程光谱诊断的研究

21.    天津市基金项目,焊接烟尘产生的电弧物理特征多信息融合分析与研究

22.    天津市基金项目,GMAW-P熔池动态行为与熔透实时控制机理研究

二、XX项目

1.       镁合金电弧增材-搅拌摩擦处理复合制造研究  

2.       镁合金激光-电弧复合焊接相关研究

3.       铝合金激光焊接相关研究

4.       射流管焊接相关研究

5.       异种钛合金激光焊接相关研究

三、校企合作项目

1.      盾构机构件机器人焊接系统研制

2.      可移动式智能化焊接装备及技术研发

3.      大型滚筒全熔透式焊接技术及自动焊接机械手设备的研究开发

4.      材料性能测试、直径426管道环焊缝缺陷全尺寸失效模拟试验

5.      场桥焊接轨道疲劳寿命测试研究

6.      48"WQ-600Lb全焊接管线球阀的CTOD试验及其安全性评价

   


研究成果

[1] Chenpeng Jia, Yiming Huang*, Shengbin Zhao, Changxing Li, Jiong Yuan, Feng Zhang, Lijun Yang*. Statistical analysis of plasma thermodynamic behavior based on laser deep penetration welding of TC4 titanium alloy [J]. Measurement, 225, 2024, 114004.

[2] Lixin Wang, Yiming Huang*, Chenpeng Jia, Lijun Yang*, Shuai Yan. Laser-directed energy deposition of in-situ titanium-matrix coatings with a Ti-B4C cored wire[J]. Additive Manufacturing, 2023, 73: 103682.

[3] Lixin Wang, Jiong Yuan, Hanbo Zhang, Yiming Huang*, Lijun Yang*. Effects of the laser-wire relative position on the wire-based laser-directed energy deposition of in-situ synthesis Ti/TiB/TiC composite coatings. Materials Characterization,2023, 113408.

[4] Shuling Gao, Ning Li*, Yiming Huang*, Jiabao Yan, Lijun Yang. Experimental study of fatigue behaviour of Q690qENH bridge weathering high-strength steel welded joints[J]. Thin-Walled Structures, 2023, 190: 110954.

[5] Jiong Yuan, Yiming Huang*, Lixin Wang, Chenpeng Jia, Feng Zhang, Lijun Yang*. Effect of the dissolution characteristic of tungsten carbide particles on Microstructure and properties of Ni-WC/W2C reinforcement coating manufactured by TIG cladding[J]. International Journal of Refractory Metals and Hard Materials, 2022.

[6] Shengbin Zhao, Chenpeng Jia, Yuxue Yuan, Lixin Wang, Yiming Huang*, Lijun Yang*. Effects of laser remelting on microstructural characteristics of Ni-WC composite coatings produced by laser hot wire cladding[J]. Journal of Alloys and Compounds.2022, 908, 164612.

[7] Zhao Shengbin, Xu Sai, Yang Lijun*, Huang Yiming. WC-Fe metal-matrix composite coatings fabricated by laser wire cladding [J]. Journal of Materials Processing Technology, 2022, 301: 117438.

[8] Zhao Shengbin, Jia Chenpeng, Yuan Yuxue, Wang Lixin, Huang Yiming*, YangLijun*. Insights into microstructural evolution and dissolution characteristics of reinforced particles in tungsten carbide‑nickel composite coatings prepared by laser hot-wire deposition [J]. International Journal of Refractory Metals and Hard Materials, 2021, 105720.

[9] Lixin Wang, Yiming Huang*, Yuxue Yuan, Chenpeng Jia, Lijun Yang*. Microstructure, wear and oxidation resistance of Al-doped Ti–Si3N4 coatings by laser cladding [J]. Surface & Coatings Technology, 2021, 127942.

[10] Fan Zhang, Junqi Shen*, Shengsun Hu, et al. Numerical simulation of thermal and stress fields for multilayer and multi-pass weaving WAAM of magnesium alloy [J]. Rapid Prototyping Journal, 2025,31(2):252-270.

[11] Hui Geng, Junqi Shen*, Shengsun Hu,et al. Microstructure, corrosion and wear behavior of (AlCu)3.5CoCrNiFe and (AlCu)3.5CoCrNiTi high entropy alloy coatings prepared by laser cladding on AZ91 magnesium alloy[J].Journal of Materials Research and Technology, 2024,30:3383-3393.

[12] Huichao Zhao, Junqi Shen*, Shengsun Hu,et al. AZ91 magnesium alloy CMT cladding layer processed using friction stir processing: effect of traverse speed on microstructure and mechanical properties[J].Materials, 2024,17(10):2348.

[13] Changle Sun, Junqi Shen*, Shengsun Hu,et al. Microstructure and properties of 316L/Ti6Al4V composites prepared by laser melting deposition[J].Journal ofMaterialsEngineering and Performance, 2023,32(7):3073-3083.

[14] Chengxuan Yin,Junqi Shen*, Shengsun Hu,et al. Microstructure and mechanical properties of AZ91 magnesium alloy fabricated by multi-layer and multi-pass CMT based WAAM technique[J].Results in Engineering, 2023,18:101065.

[15] Chenfan Liu, Junqi Shen*, Shengsun Hu,et al.Seam tracking system based on laser vision and CGAN for robotic multi-layer and multi-pass MAG welding [J].Engineering Applications of Artificial Intelligence, 2022,116:105377.

[16] Yahui Zhen,Junqi Shen*, Shengsun Hu,et al.Effect of rotation rate on microstructure and mechanical properties of CMT cladding layer of AZ91 magnesium alloy fabricated by friction stir processing [J].Journal of Manufacturing Processes, 2022,79:553-561.

[17] Zhiwei Wang,Junqi Shen*, Shengsun Hu,et al.Microstructure and mechanical properties of TC4/6061 and TC4/2024 dissimilar joints by autogenous laser welding-brazing [J]. Optics and Laser Technology, 2022,149:107867.

[18] Yinbao Tian,Junqi Shen*, Shengsun Hu,et al. Effects of cold metal transfer mode on the reaction layer of wire and arc additive-manufactured Ti-6Al-4V/Al-6.25Cu dissimilar alloys [J]. Journal of Materials Science & Technology, 2021,74: 35-45.

[19] Yahui Zhen,Junqi Shen*, Shengsun Hu,et al.Effect of friction stir processing on microstructure and properties of AZ91 magnesium alloy CMT cladding layer [J]. Materials Letters, 2021,282:128701.

[20] Ruiqing Yuan, Zhijiang Wang, Xinyu Liang, Lijun Yang, Tianxu Li. Strengthening submerged-arc-additively-manufactured high-strength steel via in-situ carbon doping. Journal of Manufacturing Processes, 2024, 119: 46-56.

[21] Zhijiang Wang, Zhendong Chen, Shaojie Wu, Caiyan Deng, Zhichen Lin. Fuzzy control of backside weld width in cold metal transfer welding of X65 pipeline in the veritcal-up position. Welding in the World, 2024, 68: 829-842.

[22] Yue Cao, Zhijiang Wang, Shengsun Hu, Tao Wang. Adaptive predictive control of backside weld width in pulsed gas metal arc welding using electrical characteristic signals as feedback. IEEE Transactions on Control Systems Technology, 2023, 31(6): 2879-2886.

[23] Zhijiang Wang, Zitong Zeng, Shaojie Wu, Xinxin Shu, Chengfeng Wu, Dongpo Wang, Shengsun Hu. Weld penetration control of wire-filled pulsed gas tungsten arc welding of pipe in the horizontal position. Welding in the World, 2023, 67: 1793-1807.

[24] Shuangyang Zou, Zhijiang Wang, Yue Cao, Shengsun Hu. Effects of filler wire intervention on the gas tungsten arc: Part III – process stability control of wire-filled GTAW. Welding Journal, 2023, 102(3): 53s-68s.

[25] Zhendong Chen, Zhijiang Wang, Fengrui Wang, Xinyu Liang, Wang Liu, Shaojie Wu, Dongpo Wang. Feasibility study on sensing and prediction of backside weld geometry in cold metal transfer welding of X65 pipeline in the vertical-up position. Journal of Manufacturing Processes, 2023, 85: 1173-1186.

[26] Tianxu Li, Zhijiang Wang, Zhenwen Yang, Ying Wang, Shengsun Hu. Effect of different wire feeding strategies on the preparation of functionally graded materials by dual-wire arc additive manufacturing. Metallurgical and Materials Transactions B, 2023, 54: 43-49.

[27] Xinyu Liang, Zhijiang Wang, Lei Cui, Zhixiong Lin, Zhendong Chen, Feng Zhang, Zhen Shao, Lijun Yang, Yongliang Chen, Yiming Huang, Dongpo Wang. High-quality friction pull plug welding of AA2219-T87 plate with a thickness of 18 mm: experimental characterization on shaping, microstructure and mechanical properties. Materials Characterization, 2022, 194: 112448.

[28] Tianxu Li, Zhijiang Wang, Shengsun Hu, Zhenwen Yang, Ying Wang. Hot cracking during the fabrication of Inconel 625/stainless steel 308 L functionally graded material by dual-wire arc additive manufacturing. Journal of Manufacturing Processes, 2022, 82: 461-473.

[29] Tianxu Li, Zhijiang Wang, Zhenwen Yang, Xinxin Shu, Jun Xu, Ying Wang, Shengsun Hu. Fabrication and characterization of stainless steel 308 L / Inconel 625 functionally graded material with continuous change in composition by dual-wire arc additive manufacturing. Journal of Alloys and Compounds, 2022, 915: 165398(1-13).

[30] Wang Liu, Zhijiang Wang, Zhendong Chen, Huawei Liu, Shaojie Wu, Dongpo Wang, Shengsun Hu. Sensing and characterization of backside weld geometry in surface tension transfer welding of X65 pipeline. Journal of Manufacturing Processes, 2022, 78: 120-130.

[31] Zitong Zeng, Zhijiang Wang, Shengsun Hu, Shaojie Wu. Dynamic molten pool behavior of pulsed gas tungsten arc welding with filler wire in horizontal position and its characterization based on arc voltage. Journal of Manufacturing Process, 2022, 15: 1-12.

[32] Yiming Huang*, Qi Liu, Kaiyue Zhang, Mingyu Li, Tianhao Yang, Lijun Yang, Lei Cui*. Investigation of three-dimensional forces during additive friction stir deposition—How could force signals reveal the deposition quality?. International Journal of Machine Tools and Manufacture, 2025, 204: 104234.

[33] Yiming Huang*, Shanben Chen. Key Technologies of Intelligentized Welding Manufacturing: The spectral diagnosis technology for pulsed gas tungsten arc welding of Aluminum alloys [M]. Springer, 2019.

[34] Yiming Huang, Feng Zhang, Jiong Yuan, Chenpeng Jia, Xukai Ren, Lijun Yang*. Investigation on surface morphology and microstructure of double-wire+ arc additive manufactured aluminum alloys based on spectral analysis[J]. Journal of Manufacturing Processes, 2022, 84: 639-651.

[35] Yiming Huang, Yuxue Yuan, Yingchao Feng, Jinping Liu, Lijun Yang*, Lei Cui*. Effect of activating flux Cr2O3 on microstructure and properties of laser welded 5083 aluminum alloys [J]. Optics & Laser Technology, 2022, 150:107930.

[36] Yiming Huang, Shuaishuai Hou, Lijun Yang*, Gan Tian*, Zhen Yong, Shuyi Liu. Effect of arc dynamic behavior on deposition quality of additive manufactured aluminum alloys[J]. Journal of Materials Processing Technology, 2021, 295: 117172.

[37] Yiming Huang, Yuxue Yuan, Lijun Yang*, Zhifen Zhang*, Shuaishuai Hou. A study on porosity in gas tungsten arc welded aluminum alloys using spectral analysis[J]. Journal of Manufacturing Processes, 2020, 57: 334-343.

[38] Yiming Huang, Yuxue Yuan, Lijun Yang*, Di Wu*, Shanben Chen. Real-time Monitoring and Control of Porosity Defects during Arc Welding of Aluminum Alloys[J]. Journal of Materials Processing Technology, 2020, 286: 116832.

 


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