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Effect of Interfacial Reaction on the Mechanical Performance of Steel to Aluminum Dissimilar Ultrasonic Spot Welds

Lei Xu, Li Wang, Ying-Chun Chen, Joe D Robson, Philip B Prangnell

Metallurgical and Materials Transactions A - Physical Metallurgy and Materials Science. 2016;47(1): 334-346.

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Abstract

The early stages of formation of intermetallic compounds (IMC) have been investigated in dissimilar aluminum to steel welds, manufactured by high power (2.5 kW) ultrasonic spot welding (USW). To better understand the influence of alloy composition, welds were produced between a low-carbon steel (DC04) and two different aluminum alloys (6111 and 7055). The joint strengths were measured in lap shear tests and the formation and growth behavior of IMCs at the weld interface characterized by electron microscopy, for welding times from 0.2 to 2.4 seconds. With the material combinations studied, the η (Fe2Al5) intermetallic phase was found to form first, very rapidly in the initial stage of welding, with a discontinuous island morphology. Continuous layers of η and then θ (FeAl3) phase were subsequently seen to develop on extending the welding time to greater than 0.7 seconds. The IMC layer formed in the DC04-AA7055 combination grew thicker than for the DC04-AA6111 welds, despite both weld sets having near identical thermal histories. Zinc was also found to be dissolved in the IMC phases when welding with the AA7055 alloy. After post-weld ageing of the aluminum alloy, fracture in the lap shear tests always occurred along the joint interface; however, the DC04-AA6111 welds had higher fracture energy than the DC04-AA7055 combination.

Bibliographic metadata

Type of resource:
Content type:
Publication status:
Accepted
Publication type:
Published date:
ISSN:
Volume:
47
Issue:
1
Start page:
334
End page:
346
Total:
12
Pagination:
334-346
Digital Object Identifier:
10.1007/s11661-015-3037-7
Funding awarded to University:
  • EPSRC - RESEPSRC
Funder(s) acknowledged in this article?:
Yes
Research data access statement included:
No
Attached files embargo period:
Immediate release
Attached files release date:
6th January, 2016
Access state:
Active

Institutional metadata

University researcher(s):

Record metadata

Manchester eScholar ID:
uk-ac-man-scw:294383
Created by:
Prangnell, Philip
Created:
6th January, 2016, 13:58:49
Last modified by:
Prangnell, Philip
Last modified:
6th January, 2016, 16:16:00

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