Self-Powered Fast Brazing of Ti-6Al-4V Using Ni/Al Reactive Multilayer Films
Self-powered brazing of Ti-6Al-4V was performed using Ni/Al reactive multilayer films (RMFs) as self-propagated heat resources. BAlSi-4 was first coated on Ti-6Al-4V by plasma welding, then alternating layers of Ni and Al were successfully deposited on BAlSi-4 up to 32.9 μm thick with e-beam deposit...
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doaj-886acd2edc7a4b6badeafcd5585919dc2020-11-25T00:22:40ZengMDPI AGApplied Sciences2076-34172018-06-018698510.3390/app8060985app8060985Self-Powered Fast Brazing of Ti-6Al-4V Using Ni/Al Reactive Multilayer FilmsDenzel Bridges0Christopher Rouleau1Zachary Gosser2Cary Smith3Zhili Zhang4Kunlun Hong5Jinquan Cheng6Yoseph Bar-Cohen7Anming Hu8Department of Mechanical, Aerospace and Biomedical Engineering, University of Tennessee, 1512 Middle Drive, Knoxville, TN 37996, USACenter for Nanophase Material Sciences, Oak Ridge National Laboratory, Oak Ridge, TN 37830, USACenter for Nanophase Material Sciences, Oak Ridge National Laboratory, Oak Ridge, TN 37830, USADepartment of Mechanical, Aerospace and Biomedical Engineering, University of Tennessee, 1512 Middle Drive, Knoxville, TN 37996, USADepartment of Mechanical, Aerospace and Biomedical Engineering, University of Tennessee, 1512 Middle Drive, Knoxville, TN 37996, USACenter for Nanophase Material Sciences, Oak Ridge National Laboratory, Oak Ridge, TN 37830, USAComposite Solutions and Digital Manufacturing LLC, 3315 S. Waterfront Dr, Chandler, AZ 85248, USAJet Propulsion Laboratory (JPL), California Institute of Technology, M.S. 67-119, 4800 Oak Grove Drive, Pasadena, CA 91109, USADepartment of Mechanical, Aerospace and Biomedical Engineering, University of Tennessee, 1512 Middle Drive, Knoxville, TN 37996, USASelf-powered brazing of Ti-6Al-4V was performed using Ni/Al reactive multilayer films (RMFs) as self-propagated heat resources. BAlSi-4 was first coated on Ti-6Al-4V by plasma welding, then alternating layers of Ni and Al were successfully deposited on BAlSi-4 up to 32.9 μm thick with e-beam deposition. The joint microstructure was investigated and the AlNi and Ni5Al3 phases were identified in the RMF. The cause for the two phases was determined to be differences in the diffusivity of Ni and Al, ultrafast brazing time, and faster cooling at the interface between brazing filler metal and the RMF. The maximum temperature of 683 °C was reached in the brazed joint, with a total RMF thickness of 135 μm, which is more than sufficient to melt the BAlSi-4 brazing material. The maximum bonding strength obtained was 10.6 MPa, with a self-power brazing procedure conducted in a minute. It is possible to further improve the bonding strength by using more ductile RMFs and/or modifying the bonding interface configuration.http://www.mdpi.com/2076-3417/8/6/985brazingreactive bondingself-poweredtitaniumnanolayersreactive multilayer |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Denzel Bridges Christopher Rouleau Zachary Gosser Cary Smith Zhili Zhang Kunlun Hong Jinquan Cheng Yoseph Bar-Cohen Anming Hu |
spellingShingle |
Denzel Bridges Christopher Rouleau Zachary Gosser Cary Smith Zhili Zhang Kunlun Hong Jinquan Cheng Yoseph Bar-Cohen Anming Hu Self-Powered Fast Brazing of Ti-6Al-4V Using Ni/Al Reactive Multilayer Films Applied Sciences brazing reactive bonding self-powered titanium nanolayers reactive multilayer |
author_facet |
Denzel Bridges Christopher Rouleau Zachary Gosser Cary Smith Zhili Zhang Kunlun Hong Jinquan Cheng Yoseph Bar-Cohen Anming Hu |
author_sort |
Denzel Bridges |
title |
Self-Powered Fast Brazing of Ti-6Al-4V Using Ni/Al Reactive Multilayer Films |
title_short |
Self-Powered Fast Brazing of Ti-6Al-4V Using Ni/Al Reactive Multilayer Films |
title_full |
Self-Powered Fast Brazing of Ti-6Al-4V Using Ni/Al Reactive Multilayer Films |
title_fullStr |
Self-Powered Fast Brazing of Ti-6Al-4V Using Ni/Al Reactive Multilayer Films |
title_full_unstemmed |
Self-Powered Fast Brazing of Ti-6Al-4V Using Ni/Al Reactive Multilayer Films |
title_sort |
self-powered fast brazing of ti-6al-4v using ni/al reactive multilayer films |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2018-06-01 |
description |
Self-powered brazing of Ti-6Al-4V was performed using Ni/Al reactive multilayer films (RMFs) as self-propagated heat resources. BAlSi-4 was first coated on Ti-6Al-4V by plasma welding, then alternating layers of Ni and Al were successfully deposited on BAlSi-4 up to 32.9 μm thick with e-beam deposition. The joint microstructure was investigated and the AlNi and Ni5Al3 phases were identified in the RMF. The cause for the two phases was determined to be differences in the diffusivity of Ni and Al, ultrafast brazing time, and faster cooling at the interface between brazing filler metal and the RMF. The maximum temperature of 683 °C was reached in the brazed joint, with a total RMF thickness of 135 μm, which is more than sufficient to melt the BAlSi-4 brazing material. The maximum bonding strength obtained was 10.6 MPa, with a self-power brazing procedure conducted in a minute. It is possible to further improve the bonding strength by using more ductile RMFs and/or modifying the bonding interface configuration. |
topic |
brazing reactive bonding self-powered titanium nanolayers reactive multilayer |
url |
http://www.mdpi.com/2076-3417/8/6/985 |
work_keys_str_mv |
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1725358985099345920 |