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Investigation on laser brazing AA6056 Al alloy to XC18 low-carbon steel 被引量:2

Investigation on laser brazing AA6056 Al alloy to XC18 low-carbon steel
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摘要 Based on the studies of influence of YAG laser heating conditions for Al alloy melt and steel on wettability, the mechanics of the laser overlap braze welding of 6056 Al and XC18 steel sheet has been investigated. Under the temperature range which is above the melting point of the Al alloy and below the melting point of the steel, two dissimilar metals can be joined by means of laser braze welding. There is no crack observed in the joining area, i.e. Al-Fe intermetallic phase (Fe3Al/FeAl/FeAl3/Fe2Al5) layer formed by solution and diffusion between liquid-solid interface. The temperature range can be defined as the process temperatures of laser braze welding of Al-Fe materials. Selecting a higher laser heating temperature can improve the wettability of Al melt to steel surface, but the intermetallic phase layer is also thicker. When the laser heating temperature is so high that the joining surface of steel is melted, there is a crack trend in the joining area. Based on the studies of influence of YAG laser heating conditions for Al alloy melt and steel on wettability, the mechanics of the laser overlap braze welding of 6056 Al and XC18 steel sheet has been investigated. Under the temperature range which is above the melting point of the Al alloy and below the melting point of the steel, two dissimilar metals can be joined by means of laser braze welding. There is no crack observed in the joining area, i.e. Al-Fe intermetallic phase (Fe3Al/FeAl/FeAl3/Fe2Al5) layer formed by solution and diffusion between liquid-solid interface. The temperature range can be defined as the process temperatures of laser braze welding of Al-Fe materials. Selecting a higher laser heating temperature can improve the wettability of Al melt to steel surface, but the intermetallic phase layer is also thicker. When the laser heating temperature is so high that the joining surface of steel is melted, there is a crack trend in the joining area.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2005年第1期31-34,共4页 中国光学快报(英文版)
关键词 Aluminum alloys BRAZING Carbon steel TEMPERATURE Aluminum alloys Brazing Carbon steel Temperature
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同被引文献18

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  • 2倪加明,李俐群,陈彦宾,封小松.铝/钛异种合金激光熔钎焊接头特性[J].中国有色金属学报,2007,17(4):617-622. 被引量:30
  • 3Korenyuk Y M.Interaction of liquid aluminium and solid titanium in fusion welding[J].Welding Production,1975,22(6):3-5.
  • 4REN Jiang-wei,LI Ya-jiang,FENG Tao.Microstructure characteristics in the interface zone of Ti/Al diffusion bonding[J].Materials Letters,2002,56(5):647-652.
  • 5Wilden J,Bergmann J P.Manufacturing of titanium/aluminium and titanium/steel joints by means of diffusion welding[J].Welding and Cutting,2004,3(5):285-290.
  • 6Takemoto T,Okamoto I.Intermetallic compounds formed during brazing of titanium with aluminum filler metals[J].Journal of Material Science,1988,23(4):1301-1308.
  • 7Sohn W H,Bong H H,Hong S H.Microstructure and bonding mechanism of Al/Ti bonded joint using Al10Si1Mg filler metal[J].Mater Sci Eng A,2003,355(1/2):231-240.
  • 8Kreimeyer M,Wagner F,Vollertsen F.Laser processing of aluminum titanium tailored blanks[J].Optics and Lasers in Engineering,2005,43(9):1021-1035.
  • 9Kreimeyer M,Wagner F,Sepold G.Laser welding/brazing for joining tailored blanks[J].Industrial Laser Solutions,2002,17(11):15-16.
  • 10Song W,Saida K,Ando A,Nishimoto K.Brazability of aluminum alloy to steels using aluminum filler metal-dissimilar laser brazing of aluminum alloy and steels (Report Ⅰ)[J].Quarterly Journal of the Japan Welding Society,2004,22(2):315-322.

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