Probing joint strength and distortion in gas metal arc lap joining of aluminum and steel sheets
Joining of multi-metallic assemblies such as aluminum and steel sheets using fusion joining technologies is prudent although the formation of intermetallic compounds along joint interface has remained a critical challenge. An advanced, low-power input, gas metal arc process was employed here for joi...
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Published in | Welding in the world Vol. 63; no. 2; pp. 229 - 236 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
08.03.2019
Springer Nature B.V |
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Abstract | Joining of multi-metallic assemblies such as aluminum and steel sheets using fusion joining technologies is prudent although the formation of intermetallic compounds along joint interface has remained a critical challenge. An advanced, low-power input, gas metal arc process was employed here for joining of aluminum and zinc-coated steel sheets of dissimilar thicknesses in lap-joint configuration. The heat input during the process was restricted by fast responsive current and voltage pulses that allowed a synchronized arcing and short circuiting at a low arc power. The effect of heat input and thermophysical properties of base materials on the bead profile, joint strength, and distortion was studied extensively. The results indicated a rational improvement of joint quality with lowering of the heat input within a restrictive range of processing conditions such as wire feed rate and travel speed. Most importantly, the mixed-metal assembly exhibited different thermal distortions with the aluminum top sheet undergoing greater distortion than the bottom steel sheet due to a higher coefficient of thermal expansion. |
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AbstractList | Joining of multi-metallic assemblies such as aluminum and steel sheets using fusion joining technologies is prudent although the formation of intermetallic compounds along joint interface has remained a critical challenge. An advanced, low-power input, gas metal arc process was employed here for joining of aluminum and zinc-coated steel sheets of dissimilar thicknesses in lap-joint configuration. The heat input during the process was restricted by fast responsive current and voltage pulses that allowed a synchronized arcing and short circuiting at a low arc power. The effect of heat input and thermophysical properties of base materials on the bead profile, joint strength, and distortion was studied extensively. The results indicated a rational improvement of joint quality with lowering of the heat input within a restrictive range of processing conditions such as wire feed rate and travel speed. Most importantly, the mixed-metal assembly exhibited different thermal distortions with the aluminum top sheet undergoing greater distortion than the bottom steel sheet due to a higher coefficient of thermal expansion. |
Author | Makwana, P. Shome, M. Goecke, Sven-F De, A. |
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Cites_doi | 10.1007/s40194-014-0146-7 10.1533/9781845690144 10.1179/174329308X341852 10.1080/13621718.2016.1207289 10.1179/1362171815Y.0000000032 10.1016/j.jmatprotec.2013.04.004 10.1016/j.jmatprotec.2014.06.017 10.1016/j.jmatprotec.2013.11.022 10.1007/BF03321356 10.1016/j.commatsci.2009.05.003 10.1179/174328407X213152 10.2207/qjjws.31.26s 10.1179/1362171810Y.0000000029 10.1016/j.jmapro.2017.04.006 10.1016/j.jmatprotec.2011.10.009 10.1016/j.matdes.2013.01.045 10.1016/j.commatsci.2007.12.006 10.1155/2009/974182 |
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Keywords | Mixed-metal assembly Gas metal arc joining Zinc-coated steel Thermal distortion Aluminum alloy |
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SubjectTerms | Aluminum Arc heating Chemistry and Materials Science Distortion Feed rate Intermetallic compounds Joining Materials Science Metal sheets Metallic Materials Research Paper Solid Mechanics Theoretical and Applied Mechanics Thermal expansion Thermophysical properties Voltage pulses Welded joints Zinc coatings |
Title | Probing joint strength and distortion in gas metal arc lap joining of aluminum and steel sheets |
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