Home
Scholarly Works
Effects of Heat Treatment on Grain-Boundary...
Journal article

Effects of Heat Treatment on Grain-Boundary β-Mg17Al12 and Fracture Properties of Resistance Spot-Welded AZ80 Mg Alloy

Abstract

The distribution and morphology of β-Mg17Al12 intermetallic phase in resistance spot-welded AZ80 Mg alloy were investigated by means of optical microscopy, scanning electron microscopy, and X-ray diffraction. The influence of intermetallic phase on mechanical strength was studied by tensile shear testing and fractography. The results showed that continuous networks of β-Mg17Al12 formed along grain boundaries in both the nugget and heat-affected zone of the spot-welded AZ80 Mg alloy. Those continuous grain-boundary β-Mg17Al12 networks acted as effective crack propagation paths, which had negative effects on the weld strength. Post-weld solution heat treatment effectively reduced the amount of β-Mg17Al12 and broke the grain-boundary intermetallic networks in both the nugget and heat-affected zone. This significantly increased the weld strength of AZ80 Mg alloy and changed the fracture mode from nugget pull-out in the as-welded condition to through-thickness after heat treatment.

Authors

Niknejad ST; Liu L; Nguyen T; Lee M-Y; Esmaeili S; Zhou NY

Journal

Metallurgical and Materials Transactions A, Vol. 44, No. 8, pp. 3747–3756

Publisher

Springer Nature

Publication Date

August 1, 2013

DOI

10.1007/s11661-013-1724-9

ISSN

1073-5623

Contact the Experts team