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Numerical simulation of applied electromagnetic field and electromagnetic force in all-position welding

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【作者】 牛雪娟李亮玉姜旭东岳建锋

【Author】 Niu Xuejuan;Li Liangyu;Jiang Xudong;Yue Jianfeng;Tianjin Key Laboratory of Modern Mechatronics Equipment Technology,Tianjin Polytechnic University;

【机构】 Tianjin Key Laboratory of Modern Mechatronics Equipment Technology,Tianjin Polytechnic University

【摘要】 All-position welding is an important technology in energy sources,chemical,shipbuilding and other industries.When welding current is larger than 200 A,the molten metal tends to flow down due to the force of gravity.In order to "push" the molten metal into the weld,a new kind of U-frame excitation model,which could produce electromagnetic force to balance the gravity of the molten pool,was designed.The related parameters of the excitation model were simulated by Maxwell 3D,and the relationships between the parameters and the magnetic induction intensity were analyzed.Finally,the electromagnetic force in the molten pool was calculated,and the appropriate parameters of the U-frame excitation model were determined.The results of the simulation verify the feasibility of the all-position welding excitation model.

【Abstract】 All-position welding is an important technology in energy sources,chemical,shipbuilding and other industries.When welding current is larger than 200 A,the molten metal tends to flow down due to the force of gravity.In order to "push" the molten metal into the weld,a new kind of U-frame excitation model,which could produce electromagnetic force to balance the gravity of the molten pool,was designed.The related parameters of the excitation model were simulated by Maxwell 3D,and the relationships between the parameters and the magnetic induction intensity were analyzed.Finally,the electromagnetic force in the molten pool was calculated,and the appropriate parameters of the U-frame excitation model were determined.The results of the simulation verify the feasibility of the all-position welding excitation model.

【基金】 supported by the National Natural Science Foundation of China(No.51075299)
  • 【文献出处】 China Welding ,中国焊接(英文版) , 编辑部邮箱 ,2013年03期
  • 【分类号】TG457
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