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6009铝合金光纤激光-MIG电弧复合焊和光纤激光焊工艺对比研究
引用本文:张德芬,杨阳,王同举,谭盖,王松,朱亚,黄杰,李韬.6009铝合金光纤激光-MIG电弧复合焊和光纤激光焊工艺对比研究[J].材料导报,2015,29(12):121-124, 134.
作者姓名:张德芬  杨阳  王同举  谭盖  王松  朱亚  黄杰  李韬
作者单位:1. 西南石油大学材料科学与工程学院,成都,610500;2. 中国石油川庆钻探工程公司国际工程公司,成都,610051
基金项目:四川省教育厅重点资助项目,西南石油大学开放实验重点项目
摘    要:采用光纤激光-MIG 复合焊和光纤激光焊分别对6009铝合金进行焊接,研究两种焊接方式下焊接接头的成型性、显微组织、拉伸性能、显微硬度、断口形貌的不同。研究表明:激光电弧复合焊的焊接速度是激光焊接的3倍;相比于激光焊,激光电弧复合焊焊缝中心显微组织更加细小;接头的抗拉强度达到母材的63%以上,而激光焊接的抗拉强度仅仅只有母材的38%;显微硬度试验表明:复合焊存在软化区,而激光焊接几乎没有软化区;断口分析表明:复合焊和激光焊的拉伸断口都是典型的韧窝状态,但是复合焊接的韧窝更加均匀。

关 键 词:6009铝合金  光纤激光-MIG电弧复合焊  光纤激光焊接  工艺性能

Comparison of Fiber Laser-MIG Arc Hybrid and Fiber Laser Welding of 6009 Aluminum Alloy
ZHANG Defen,YANG Yang,WANG Tongju,TAN Gai,WANG Song,ZHU Y,HUANG Jie and LI Tao.Comparison of Fiber Laser-MIG Arc Hybrid and Fiber Laser Welding of 6009 Aluminum Alloy[J].Materials Review,2015,29(12):121-124, 134.
Authors:ZHANG Defen  YANG Yang  WANG Tongju  TAN Gai  WANG Song  ZHU Y  HUANG Jie and LI Tao
Affiliation:School of Material Science and Engineering, Southwest Petroleum University, Chengdu 610500,School of Material Science and Engineering, Southwest Petroleum University, Chengdu 610500,School of Material Science and Engineering, Southwest Petroleum University, Chengdu 610500,School of Material Science and Engineering, Southwest Petroleum University, Chengdu 610500,School of Material Science and Engineering, Southwest Petroleum University, Chengdu 610500,School of Material Science and Engineering, Southwest Petroleum University, Chengdu 610500,School of Material Science and Engineering, Southwest Petroleum University, Chengdu 610500 and CCDC International LTD,Chengdu 610051
Abstract:The effect of different bonding technology on welding point weld appearance,microstructure,tensile properties,microhardness,fracture morphology of 6 mm 6009 aluminum alloys which was welded by fiber laser and fi-ber laser-MIG arc hybrid welding were studied.The results showed that the speed of laser-MIG hybrid welding is 3 times of that of laser welding;laser-arc hybrid welding microstructure is better than laser welding microstructure;the tensile strength of the laser-MIG hybrid welding welded joints has reached 63% of the tensile strength of base mate-rial,while the tensile strength of laser welding is only 38% of that of the base material;the composite welding had softening zone,but laser welding almost have no softening one;the tensile fracture of laser-MIG hybrid welding and la-ser welding have typical dimples,but laser-MIG hybrid welding zone′s dimples are more even.
Keywords:6009 aluminum alloys  fiber laser-MIG arc hybrid welding  fiber laser welding  processing pro-perties
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