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  4. Transient microstructural evolution of infrared brazed Fe3Al intermetallics using aluminum foil
 
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Transient microstructural evolution of infrared brazed Fe3Al intermetallics using aluminum foil

Journal
Intermetallics
Journal Volume
13
Journal Issue
8
Pages
818-826
Date Issued
2005
Author(s)
Shiue, R.K.  
Wu, S.K.  
Y.L. Lee
DOI
10.1016/j.intermet.2005.01.005
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/491888
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-17844389887&doi=10.1016%2fj.intermet.2005.01.005&partnerID=40&md5=f8def7a90bbea4884080326f578e3119
Abstract
The present work reports a novel approach in joining Fe3Al by infrared brazing using the pure Al as brazing filler metal. Based on the Al-Fe binary alloy phase diagram, the species and morphology of phases as well as the transient evolution of microstructures in the infrared brazed joint are extensively studied. The Fe3Al substrate is dissolved into the molten braze, and reacts simultaneously with the Al-rich melt during infrared brazing. Various iron aluminides such as FeAl3, Fe2Al 5, FeAl2, FeAl and eutectoid FeAl2-FeAl are observed in the infrared brazed joint for different brazing temperatures. For brazing temperatures between 700 and 1000°C, the dendritic morphology of Fe2Al5 phase dominates the infrared brazed joint. For brazing temperatures between 1050 and 1200°C, solid-state interdiffusion of aluminum and iron among reaction products and base metal is followed by isothermal solidification of the molten braze. Primary FeAl and eutectoid FeAl-FeAl2 are widely observed in the infrared brazed joint. Further increasing the brazing temperature and/or time, the interface between the braze alloy and substrate is finally disappeared. © 2005 Elsevier Ltd. All rights reserved.
Type
journal article

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