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Guangjie Feng
Published:2022-03-25


Guangjie Feng

DEPARTMENTMaterial Forming and Control Engineering

THE TITLELecturer

POSITIONDoctoral Advisor

DEGREEPh.D.

E-MAILfenggj@cqu.edu.cn

TEL


Studying and Working Experience

Sep. 2018-now, Lecturer, Material Forming and Control Engineering, Chongqing University

Sep. 2013-Apr. 2018, Ph.D. Materials Processing Engineering, Harbin Institute of Technology

Sep. 2016-Sep. 2017, Joint Ph.D. Chemical Engineering, University of Maryland, College Park

Sep. 2011-Jul. 2013, M.S. Materials Processing Engineering, Harbin Institute of Technology

Sep. 2007-Sep. 2011, B.S. Material Forming and Control Engineering, Harbin University of Science and Technology

Professional affiliations

l Deputy Secretary-General. Welding Branch of Chongqing Mechanical Engineering Society

l Youth Committee. MTS Material Testing Committee, Chinese Society of Mechanics

l Correspondence Reviewer. National Natural Science Foundation of China

l Guest Editor. Crystals

l Reviewer. Journal of Materials Processing Technology, Journal of Manufacturing Processes, Journal of the European Ceramic Society, Materials Letters, et al.

The courses

l Welding Equipments and Welding Automation

l Thermodynamics basis of Materials Forming

l Practice of Material Forming Technology (Innovative Practice Course)

l Comprehensive Experiment of Material Forming Innovation

Main Research areas

l Joining of new materials and dissimilar materials

l Brazing and diffusion welding of composite materials, ceramic materials, and new alloy materials

l Self-propagating high-temperature synthesis joining

l Welding metallurgy and technology of ultra-high-strength steel

l Theoretical prediction and control of welding residual stress and deformation

Research projects

l National Natural Science Foundation of China Youth Project, Jan. 2020-Dec. 2022

l General project of Chongqing Natural Science Foundation, Jul. 2020-Jun. 2023

l Open Project of the State Key Laboratory of Advanced Welding and Joining, Jan. 2021-Dec. 2022

l Fundamental Research Funds for the Central Universities Project, Jan. 2019-Nov. 2019

l Shanghai Aerospace Science and Technology Innovation Fund, Sep. 2014-Dec. 2016

Publications & Patents

Publications

[1] G Feng*, Z Li*, L Shen, Z Zhou. Laser-induced combustion joining of Cf/Al composites and TC4 alloys. Transactions of Nonferrous Metals Society of China (Accepted).

[2] G Feng*, Wei Yan, B Hu, Y Wang, D Deng, X Yang. Vacuum diffusion bonding of Ti2AlNb alloy and TC4 alloy. Transactions of Nonferrous Metals Society of China 2021, 31 (9): 2677-2686.

[3] Y Wang, B Hu, Y Wei, G Feng*, D Deng. Microstructure and mechanical properties of vacuum diffusion bonded Ti2AlNb/Ti/TC4 joint. Crystals 2021, 11, 770.

[4] Y Wang, G Feng*, X Pu, D Deng. Influence of welding sequence on residual stress distribution and deformation in Q345 steel H-section butt-welded joint. Journal of Materials Research and Technology 2021, 13: 144-153.

[5] Y Wang, M Liu, H Zhang, Z Wen, M Chang, G Feng*, D Deng. Fabrication of reliable ZTA composite/Ti6Al4V alloy joints via vacuum brazing method: Microstructural evolution, mechanical properties and residual stress prediction. Journal of the European Ceramic Society 2021, 41 (7): 4273-4283.

[6] G Feng, Y Wang*, W Luo, L Hu, D Deng. Comparison of welding residual stress and deformation induced by local vacuum electron beam welding and metal active gas arc welding in a stainless steel thick-plate joint. Journal of Materials Research and Technology 2021, 13: 1967-1979.

[7] G Feng, M Liu, Y Liu, Z Jin, Y Wang*, D Deng. Wetting behavior of the Ag-5CuO brazing alloy on ZTA composite ceramic with/without CuO coating in air. Crystals 2021, 11, 609.

[8] Y Wang, G Feng*, Y Wei, B Hu, D Deng. Bonding SiCp/Al composites via laser-induced exothermic reactions. Crystals 2021, 11, 535.

[9] Z Li, G Feng, D Deng*, Y Luo. Investigating welding distortion of thin-plate stiffened panel steel structures by means of thermal elastic plastic finite element method. Journal of Materials Engineering and Performance, 2021, 30: 3677-3690.

[10] L Shen, ZR Li*, GJ Feng, SY Zhang, Z Zhou, P He. Self-propagating synthesis joining of Cf/Al composites and TC4 alloy using AgCu filler with Ni–Al–Zr interlayer. Rare Metals 2021, 40 (7): 1817-1824.

[11] Y Chen, Z Ji*, M Hu, H Xu, G Feng. Microstructure and mechanical properties of AlCrFeCoNi high-entropy alloy particle reinforced Mg-9Al-1Zn matrix composites. International Journal of Materials Research 2021, 112 (7): 538-545.

[12] X Hu, G Feng*, Y Wang, C Zhang, D Deng. Influence of lumping passes on calculation accuracy and efficiency of welding residual stress of thick-plate butt joint in Boiling Water Reactor. Engineering Structures 2020, 222, 111136.

[13] P Dai, Y Wang*, S Li, S Lu, G Feng, D Deng. FEM analysis of residual stress induced by repair welding in SUS304 stainless steel pipe butt-welded joint. Journal of Manufacturing Processes 2020, 58, 975-983.

[14] G Feng, Z Li*, Z Zhou, Y Yong, D P Sekulic, M R Zachariah. Microstructure and mechanical properties of Cf/Al-TiAl laser-assisted brazed joint. Journal of Materials Processing Technology 2018, 255: 195-203.

[15] G Feng, Z Li*, X Xu, Z Shen, Y Yang. Glass-Copper anodic bonding through activated Sn-0.6Al solder. Journal of Materials Processing Technology 2018, 254: 108-113.

[16] G Feng, Z Li*, R J Jacob, Y Yong, Y Wang, Z Zhou, D P Sekulic, M R Zachariah. Laser-induced exothermic bonding of Carbon Fiber/Al composites and TiAl Alloys. Materials & Design 2017, 126:197-206.

[17] G Feng, Z Li*, S Feng, W Zhang. Microstructure evolution and formation mechanism of laser ignited SHS joining between Cf/Al composites and TiAl alloys with Ni-Al-Ti interlayer. Rare Metals 2017, 36(9): 746-752.

[18] G Feng, Z Li*, Z Zhou, Y Wang. Joining of Cf/Al composites and TiAl intermetallics by laser-induced self-propagating high-temperature synthesis using the Ni-Al-Zr interlayer. Materials & Design 2016, 110: 130-137.

[19] ZR Li*, GJ Feng, SY Wang, SC Feng. High-efficiency joining of Cf/Al composites and TiAl alloys under the heat effect of laser-ignited self-propagating high-temperature synthesis. Journal of Materials Science & Technology 2016, 32: 1111-1116.

[20] GJ Feng, ZR Li*, RH Liu, SC Feng. Effects of joining conditions on microstructure and mechanical properties of Cf/Al composites and TiAl alloy combustion synthesis joints. Acta Metallurgica Sinica (English Letters) 2015, 28(4): 405-413.

[21] GJ Feng, ZR Li*, SC Feng, ZK Shen. Effect of Ti-Al content on microstructure and mechanical property of Cf/Al and TiAl joint by laser ignited self-propagating high-temperature synthesis. Transactions of Nonferrous Metals Society of China 2015, 25: 1468-1477.

[22] ZR Li*, GJ Feng, K Xu, XL Zhang. Microstructure and formation mechanism of SHS joining between Cf/Al composites and TiAl intermetallic with Al-Ni-CuO interlayer. Rare Metals 2015, 34(1):17-21.

[23] Y Yang, M Romano, G Feng, X Wang, T Wu, S Holdren, M Zachariah*. Growth of sub-5 nm metal nanoclusters in polymer melt aerosol droplets. Langmuir 2018, 34:585-594.

[24] W Guo, T Lin*, P He*, D P Sekulic, Z Sun, P Lin, X Shan, G Feng, B Wu, M Wang. Microstructure and characterization of interfacial phases of sapphire/sapphire joint bonded using Bi2O3–B2O3–ZnO glass. Journal of the European Ceramic Society 2017, 37: 1073-1081.

[25] X Hu, Z Peng, G Feng, S Li, D Deng*, J Yuan. Numerical simulation of residual stress and deformation of SUS310S stainless steel local vacuum electron beam welded joint. Journal of Mechanical Engineering 2020, 56 (21): 38-47.

[26] G Feng, Z Li*, K Xu, W Liu. Interface microstructure and mechanism of SiC ceramic vacuum brazed joint. Transactions of the China Welding Institution 2014, 35(1): 13-16.

[27] G Feng, Z Li*, H Zhu, K Xu. Microstructure and mechanical property of vacuumed brazed SiC ceramic joint. Journal of Materials Engineering. 2015, 43(1): 1-5.

[28] G Feng, Z Li*, K Xu, Y Liu. Thermal analysis of Ni-Al powder compact combustion behavior. Transactions of the China Welding Institution 2014, 35(9): 65-68.

[29] Z Li*, G Feng, K Xu, X Zhang. Influence of temperature on microstructure and properties of Cf/Al and TiAl SHS joint. Transactions of the China Welding Institution 2013, 34(9): 5-8.

[30] Z Li*, G Feng, K Xu, X Zhang, B Liu, K Yu. Vacuum diffusion bonding of GH4169 superalloy. Transactions of the China Welding Institution 2013, 34(6): 21-24.

Licensed Patents

[1]  Z Li, G Feng, Z Wang, Y Liu. Cu-based mid-temperature brazing filler alloys and their preparation method. ZL 201210141343.0 (2012).

[2]  Z Li, G Feng, K Xu, Y Liu. Pre-adjustable pressing fixture specialized in SHS joining. ZL 201210584495.8 (2012).

[3]  Z Li, G Feng, Z Shen, Y Liu. A method for brazing of Cf/Al composites and TiAl alloys assisted by laser-ignited SHS reaction. ZL 201310624909.X (2013).

[4]  Z Li, G Feng, W Zhang, Y Liu. Method for laser-ignited SHS joining of Cf/Al composites and TiAl alloys. ZL 201310625137.1 (2013).

[5]  Z Li, G Feng, H Zhu, J Zhang, G Liang, Y Liu. A method for joining of aluminum matrix composites and titanium alloys. ZL 201410098690.9 (2014).

[6]  Z Li, G Feng, H Zhu, G Liang, J Zhang, Y Liu. A kind of welding consumable and its igniter applied to the exothermic welding of ironbased materials. ZL 201410090311.1 (2014).

[7]  Z Li, G Feng, S Feng, S Wang, Y Liu. A method for special joining of Cf/Al composites and TiAl alloys. ZL 201510245689.9 (2015).

[8]  Z Li, G Feng, S Wang Y, S Feng, Y Liu. A method for high-efficiency joining of TiAl alloys. ZL 201510208504.7 (2015).

[9]  Z Li, X Zhang, G Feng, Y Liu. Method for joining of carbon fiber reinforced aluminum composites and metals. ZL 201210033546.8 (2012).

[10]  Z Li, S Wang, Z Hou, Z Zhou, G Feng, Y Liu. A method for joining of Mg alloys and Al alloys. ZL 201610457754.9 (2016).

Awards

The third prize of the Young Teachers' Teaching Basic Skills Competition of the College of Materials Science and Engineering, Chongqing University.

Research team

Prof. Dean Deng

Associate Prof. Yanhong Ye

Dr. Yifeng Wang


Recruiting graduate students and doctoral students majoring in materials science and engineering, welcome to apply!