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AlSi5/镀锌钢CMT熔钎焊微观组织研究 被引量:1

Study on Microstructure of AlSi5/Galvanized Steel CMT Brazed Joints
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摘要 利用CMT焊接技术,以ER4043(AlSi5)焊丝作为填充金属在镀锌钢板上进行表面堆焊试验,在保证AlSi5熔化的基础上,基体仅少量熔化,研究焊接参数对焊道表面成形和截面显微组织的影响。结果表明,采用CMT焊接技术所得AlSi5焊道表面成形均匀,有金属光泽,基本无飞溅生成。当焊接速度为100 cm/min、送丝速度为4 m/min及焊接速度为80 cm/min、送丝速度为3.5 m/min时,在AlSi5焊道/基体界面形成一定厚度的Fe-Al金属间化合物层;增加送丝速度,减小焊接行走速度会加速界面金属间化合物层的形成。发现在焊道两侧润湿铺展前沿形成富锌区,部分位置含锌量达到40 wt%左右。 ER4043 (AISiS) filler was deposited on galvanized steel surface using CMT welding method. A1Si5 filler was melted with only small amounts of melted substrate. The influence of welding parameters on the welding bead morphology and cross-sectional structure was studied. It can be seen that the appearance is uniform with bright metallic luster and spatters-free. Fe-AI intermetallic compound interface layer forms when the welding speed is 100 cm/min, wire feed rate is 4 m/min and welding speed is 80 cm/min, wire feed rate is 3.5 m/min, respectively. The increase of wire feed rate and decrease of welding speed can accelerate the formation of Fe-Al layer. A zinc rich region is formed at the wetting tip of the bead. High zinc content of 40 wt % is seen in the region.
出处 《热加工工艺》 CSCD 北大核心 2014年第11期23-26,共4页 Hot Working Technology
基金 国家自然科学基金资助项目(51375294) 上海市教委科研创新项目(12ZZ186)
关键词 CMT焊接技术 镀锌钢板 铝基钎料 组织 CMT welding technology galvanized steel sheet aluminum based brazing filler mierostructure
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  • 1雷振,秦国梁,林尚扬,王旭友,王威.铝与钢异种金属焊接的研究与发展概况[J].焊接,2006(4):16-20. 被引量:61
  • 2张洪涛,何鹏,孔庆伟,唐旭东,苏琳,杨国峰,孙静波.铝钢异种材料焊接研究现状与发展[J].焊接,2006(12):7-12. 被引量:32
  • 3Haraga steel jJ World, K. Strength properties ot" alunfinum/aluminum nts tu light weighing tf automotiw" body[J ]. Welding in The 2000, 44(4): 23-27.
  • 4Fukumolo S, Tsubakino 1, Okita K, el al. Tomita by fl'icliml welding between 5052 aluminum alloy and 304 stainless steel [J ]. Seripta Materialia. 2000, 42 (8) : 807-812.
  • 5Cakmakkaya M, Talas S. Joining of microwave sintered Fe-26A1, Fe-3OAI, Fe-26AI-14Ti and Fe-3OAI-14Ti powder mixtures by diffusion bonding using Cu interlayer[J ]. Journal of the Faculty of the Engineering and Architeeture of Gazi University, 2012, 27 (1): 91-98.
  • 6Peng I, Yajiang L, Juan W, e! al. Vacuum brazing technology and microstrueture near the interface of A1/18-8 stainless steel [J ]Materials Research Bulletin, 2003, 38(9): 1 493-1 499.
  • 7Kohsov A, Bailly N and Cretteur L. Wetting and laser brazing of Zn-coated steel products by Cu-Si filler metal[J]. J Mater Sci, 2010, 45:2 118-2 125.
  • 8Vranakova R. Arc welding of joints between zine-coatedsteel and a- luminium[J]. Welding in the World, 2005, 49 (6) : 105-109.
  • 9Song J, Lin S, Yang C, et al. Effects of Si additions on inter- metallic compound layer of aluminum-steel TIG welding-brazing joint[J]. Journal of Alloys and Compounds, 2009, 488(1): 217- 222.
  • 10Dharmendraa C, Raoa K P, Wilden J, et al. Study on laser weld- ing-brazing of zinc coated steel to aluminum alloy with a zinc based filler[ J]. Materials Science and Engineering A, 2011, 528 (3): 1 497-1 503.

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