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厚板铝合金YAG-MIG复合焊接温度场数值模拟
引用本文:姜幼卿,辜磊,刘建华.厚板铝合金YAG-MIG复合焊接温度场数值模拟[J].焊接学报,2006,27(6):104-107.
作者姓名:姜幼卿  辜磊  刘建华
作者单位:华中科技大学,材料科学与工程学院,武汉,430074
摘    要:基于ANSYS软件,采用移动旋转高斯体热源函数加载,对12mm厚板铝合金YAG激光-MIG电弧复合焊接进行了温度场有限元数值模拟,模拟中综合考虑了对流、辐射和热传导对焊接热过程的影响,将模拟结果与相同工艺条件下实际的焊接试验结果进行了比较,验证了旋转高斯体热源模型在厚板铝合金复合焊接中的适应性.采用同样的数值模拟热源和试验模拟方法,同样得到了该铝合金5 mm板模拟结果与实际结果相当一致的结论.从而为不同焊接工艺条件下铝合金中、厚板激光-电弧复合焊接焊缝形状和尺寸预测提供了一种有效的途径.

关 键 词:复合焊接  热源模型  数值模拟  铝合金
文章编号:0253-360X(2006)06-104-04
收稿时间:01 17 2006 12:00AM
修稿时间:2006-01-17

Temperature field numerical simulation of YAG-MIG hybrid welding process for thick aluminum alloy plate
JIANG You-qing,GU Lei and LIU Jian-hua.Temperature field numerical simulation of YAG-MIG hybrid welding process for thick aluminum alloy plate[J].Transactions of The China Welding Institution,2006,27(6):104-107.
Authors:JIANG You-qing  GU Lei and LIU Jian-hua
Affiliation:School of Material Science and Engineering, Huanzhong University of Science and Technology, Wuhan 430074, China,School of Material Science and Engineering, Huanzhong University of Science and Technology, Wuhan 430074, China and School of Material Science and Engineering, Huanzhong University of Science and Technology, Wuhan 430074, China
Abstract:YAG-MIG hybrid welding temperature field of 12 mm alluminun alloy plate was simulated using Gauss revolving heat source function by ANSYS. Convection, radiation and conduction were all considered during the simulation process. The Gauss revolving heat source was loaded through function table and its movement was realized by ANSYS Parameter Design Language. Simulated results agree well with the measured results.It concluded that Gauss revolve heat source was quite for the temperature field simulation of thick aluminum alloy hybrid welding.The comformability of experimentel result and simulation was also obtained for the 5 mm aluninun alloy plate.This methed was proved to be an efficient way to predict the shape and dimention of welded joints for YAG-MIG hybrod welding of thick aluminum alloy plate.
Keywords:hybrid welding  heat source model  simulation  aluminum alloy
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