A platform for research: civil engineering, architecture and urbanism
Welding of aluminum alloy to zinc coated steel by cold metal transfer
Highlights ► Aluminum alloy is successfully welded to steel by cold metal transfer (CMT). ► An optimal pre-setting gap can improve the CMT weld strength. ► The intermetallic layer morphology is influenced by the presence of zinc.
Abstract Introducing the aluminum alloy into the steel body structure allows the reduction in the vehicle weight and improves the fuel efficiency. However, it is a still great challenge to weld aluminum alloy to steel due to their differences in the physical, mechanical and metallurgical properties. In this study, aluminum alloy 6061-T6 was welded with zinc coated low carbon steel by cold metal transfer (CMT). Effects of the pre-setting gap at the interface of aluminum alloy sheet and steel sheet as well as the offset distance of the electrode torch from the aluminum alloy sheet edge on the weld qualities were investigated. The tensile shear tests were carried out to evaluate the mechanical property of the welds. In addition, optical micrograph, scanning electron microscope (SEM) and Energy Dispersive Spectrometer (EDS) were used to analyze the weld microstructure. Experimental results indicated that the intermetallic layer thickness in the CMT welds was well controlled below the 10μm, which facilitates the achievement of relatively high weld strength. Furthermore, a pre-setting gap and an appropriate post-weld heat treatment can improve the weld strength. However, the weld strength was decreased by increasing the offset distance of arc torch. In addition, the pre-setting gap also affects the intermetallic layer morphology. The formation of brittle AlxFey could be suppressed by the presence of the remained zinc in the steel side.
Welding of aluminum alloy to zinc coated steel by cold metal transfer
Highlights ► Aluminum alloy is successfully welded to steel by cold metal transfer (CMT). ► An optimal pre-setting gap can improve the CMT weld strength. ► The intermetallic layer morphology is influenced by the presence of zinc.
Abstract Introducing the aluminum alloy into the steel body structure allows the reduction in the vehicle weight and improves the fuel efficiency. However, it is a still great challenge to weld aluminum alloy to steel due to their differences in the physical, mechanical and metallurgical properties. In this study, aluminum alloy 6061-T6 was welded with zinc coated low carbon steel by cold metal transfer (CMT). Effects of the pre-setting gap at the interface of aluminum alloy sheet and steel sheet as well as the offset distance of the electrode torch from the aluminum alloy sheet edge on the weld qualities were investigated. The tensile shear tests were carried out to evaluate the mechanical property of the welds. In addition, optical micrograph, scanning electron microscope (SEM) and Energy Dispersive Spectrometer (EDS) were used to analyze the weld microstructure. Experimental results indicated that the intermetallic layer thickness in the CMT welds was well controlled below the 10μm, which facilitates the achievement of relatively high weld strength. Furthermore, a pre-setting gap and an appropriate post-weld heat treatment can improve the weld strength. However, the weld strength was decreased by increasing the offset distance of arc torch. In addition, the pre-setting gap also affects the intermetallic layer morphology. The formation of brittle AlxFey could be suppressed by the presence of the remained zinc in the steel side.
Welding of aluminum alloy to zinc coated steel by cold metal transfer
Yang, Shanglu (author) / Zhang, Jing (author) / Lian, Jin (author) / Lei, Yongpin (author)
2013-01-23
11 pages
Article (Journal)
Electronic Resource
English
Welding of aluminum alloy to zinc coated steel by cold metal transfer
British Library Online Contents | 2013
|British Library Online Contents | 2008
|Study on laser welding-brazing of zinc coated steel to aluminum alloy with a zinc based filler
British Library Online Contents | 2011
|Friction Stir Lap Welding of Magnesium Alloy and Zinc-Coated Steel
British Library Online Contents | 2009
|Thirty-Year Atmospheric Corrosion Performance of 55% Aluminum-Zinc Alloy Coated Sheet Steel
British Library Online Contents | 1996
|