Paper Publications
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[1] 李长安. Omnidirectional simulation analysis of thermomechanical coupling mechanism in inertia friction welding of Ni-based superalloy. CHINESE JOURNAL OF AERONAUTICS, 38, 2025.
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[2] 渠慎全. Evolution rules for cathode erosion and corresponding arc behaviour in tungsten inert gas welding. Science and Technology of Welding and Joining, 2024.
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[3] 王浩. Simulation of thermal-mechanical coupling in Al alloy/steel inertia friction welding. 国际机械科学, 285, 2025.
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[4] 李长安. Omnidirectional simulation analysis of thermo-mechanical coupling mechanism in inertia friction welding of Ni-based superalloy. 航空学报(英文版), 38, 202-216, 2025.
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[5] 张雪婷. Microstructure evolution and shear strength in CoCrFeNi/AISI 304 joint by vacuum brazing with BNi-2 filler metal. Journal of Materials Research and Technology, 33, 8425-8434, 2024.
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[6] 郭雪洋. 窄间隙激光焊接研究现状与存在的问题. 电焊机, 54, 1-11, 2024.
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[7] 梁国栋. 激光焊接过程多尺度数值模拟研究现状与展望. 电焊机, 54, 8-19, 2024.
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[8] 王浩. A novel method to establish friction coefficient model for numerical simulation of inertia friction welding. Materials and design, 245, 2024.
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[9] 王浩. 铝/钢异种金属旋转摩擦焊接技术研究进展. 航空制造技术, 67, 77-87, 2024.
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[10] 徐慧军. 多源传感信息融合在窄间隙激光焊接过程监控中的应用. 焊接, 1-10, 2024.
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[11] 渠慎全. 304不锈钢薄壁管焊接生产在线固溶处理工艺. Hanjie Xuebao/Transactions of the China Welding Institution, 44, 107-114+135, 2023.
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[12] Ma, Hong. Formation of nanoscale reaction layer with several crystallinities in the friction-welded 6061 Al alloy/steel joint. Materials and design, 219, 2022.
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[13] Ma, Hong. Effect of alloying elements of al alloy on the interfacial microstructure and fracture behaviour of al alloy/steel inertia friction welded joint: A comparative study. ASME 2022 17th International Manufacturing Science and Engineering Conference, MSEC 2022, 2, 2022.
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[14] Ma, Hong. Achieving superior property by forming fine-sized mult-principal element layer at the weld interface of stainless steel and medium entropy alloy. Materials and design, 223, 2022.
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[15] Dang, Zongyu. Effect of thermo-mechanical distribution on the evolution of IMCs layer and mechanical properties of 2219 aluminum alloy/304 stainless steel joints by inertia friction welding. Journal of Materials Research and Technology, 21, 2215-2227, 2022.
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[16] 党宗彧. Bonding mechanism and fracture behavior of inertia friction welded joint of 2219 aluminum alloy to 304 stainless steel. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 866, 2023.
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[17] 党宗彧. Ti6242合金线性摩擦焊及焊后热处理接头显微组织与力学性能的多尺度表征. transactions of nonferrous metals society of china, 33, 1114-1123, 2023.
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[18] Fan, Xiangchen. Comparative analysis between the laser beam welding and low current pulsed GMA assisted high-power laser welding by numerical simulation. Journal of Materials Research and Technology, 22, 2549-2565, 2023.
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[19] Zhao, Qian. On the formation of interfacial compounds in the 2A14 Al alloy/steel friction welded joint: A comparative study. Journal of manufacturing processes, 83, 398-413, 2022.
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[20] 秦国梁. 窄间隙气体保护焊接工艺发展与应用. 金属加工热加工, 8-20, 2022.
