Transient liquid phase bonding of steel using an Fe-B interlayer

Transient liquid phase bonding processes have been performed to join two carbon steel tubes using Fe96.2B3.8wt% amorphous ribbons as interlayers. Welding experiments were performed at the temperature T≈1,250°C for different durations and under pressures of 2, 3 and 4MPa. From metallographic inspecti...

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Publicado: 2007
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00222461_v42_n11_p4044_DiLuozzo
http://hdl.handle.net/20.500.12110/paper_00222461_v42_n11_p4044_DiLuozzo
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spelling paper:paper_00222461_v42_n11_p4044_DiLuozzo2023-06-08T14:47:43Z Transient liquid phase bonding of steel using an Fe-B interlayer Amorphous carbon Bonding Finite element method Steel metallography Thermal effects Welding Amorphous ribbons Carbon steel tubes Interlayers Liquid phase bonding Carbon steel Transient liquid phase bonding processes have been performed to join two carbon steel tubes using Fe96.2B3.8wt% amorphous ribbons as interlayers. Welding experiments were performed at the temperature T≈1,250°C for different durations and under pressures of 2, 3 and 4MPa. From metallographic inspection it is concluded that the bonding process ends in 7.0min if a pressure of 4MPa is applied whereas the process results incomplete if less pressure is applied. A 1D model using a finite element method has been developed for the simulation of a transient liquid phase bonding process. This model was applied to the bonding of steel/Fe-B glassy metals/steel. The computed results allow us to understand the role played by the variables involved in the bonding process. © Springer Science+Business Media, LLC 2007. 2007 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00222461_v42_n11_p4044_DiLuozzo http://hdl.handle.net/20.500.12110/paper_00222461_v42_n11_p4044_DiLuozzo
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Amorphous carbon
Bonding
Finite element method
Steel metallography
Thermal effects
Welding
Amorphous ribbons
Carbon steel tubes
Interlayers
Liquid phase bonding
Carbon steel
spellingShingle Amorphous carbon
Bonding
Finite element method
Steel metallography
Thermal effects
Welding
Amorphous ribbons
Carbon steel tubes
Interlayers
Liquid phase bonding
Carbon steel
Transient liquid phase bonding of steel using an Fe-B interlayer
topic_facet Amorphous carbon
Bonding
Finite element method
Steel metallography
Thermal effects
Welding
Amorphous ribbons
Carbon steel tubes
Interlayers
Liquid phase bonding
Carbon steel
description Transient liquid phase bonding processes have been performed to join two carbon steel tubes using Fe96.2B3.8wt% amorphous ribbons as interlayers. Welding experiments were performed at the temperature T≈1,250°C for different durations and under pressures of 2, 3 and 4MPa. From metallographic inspection it is concluded that the bonding process ends in 7.0min if a pressure of 4MPa is applied whereas the process results incomplete if less pressure is applied. A 1D model using a finite element method has been developed for the simulation of a transient liquid phase bonding process. This model was applied to the bonding of steel/Fe-B glassy metals/steel. The computed results allow us to understand the role played by the variables involved in the bonding process. © Springer Science+Business Media, LLC 2007.
title Transient liquid phase bonding of steel using an Fe-B interlayer
title_short Transient liquid phase bonding of steel using an Fe-B interlayer
title_full Transient liquid phase bonding of steel using an Fe-B interlayer
title_fullStr Transient liquid phase bonding of steel using an Fe-B interlayer
title_full_unstemmed Transient liquid phase bonding of steel using an Fe-B interlayer
title_sort transient liquid phase bonding of steel using an fe-b interlayer
publishDate 2007
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00222461_v42_n11_p4044_DiLuozzo
http://hdl.handle.net/20.500.12110/paper_00222461_v42_n11_p4044_DiLuozzo
_version_ 1768546332526510080