Experimental and numerical simulation study of Fe-based amorphous foil/Al-1060 composites fabricated by an underwater explosive welding method
The joining of amorphous alloys and common metals has been hot subjects of abundant studies in recent years. Nevertheless, the crystallization and fracture of amorphous alloy are still big challenges during the joining process. This paper presents an innovatively underwater explosive welding method...
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Published in | Composite interfaces Vol. 28; no. 10; pp. 997 - 1013 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Taylor & Francis
03.10.2021
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Subjects | |
Online Access | Get full text |
ISSN | 0927-6440 1568-5543 |
DOI | 10.1080/09276440.2020.1843868 |
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Abstract | The joining of amorphous alloys and common metals has been hot subjects of abundant studies in recent years. Nevertheless, the crystallization and fracture of amorphous alloy are still big challenges during the joining process. This paper presents an innovatively underwater explosive welding method to weld the Fe-based amorphous foil and Aluminum 1060. The interfacial microstructure was characterized using the optical microscopy (OM), field emission scanning electron microscopy (FSEM) and micro X-Ray diffraction (XRD). Meanwhile, the underwater explosive welding process was simulated using smoothed particle hydrodynamics (SPH) method by ANSYS/AUTODYN software. The experimental results indicated that the Fe-based amorphous foil and Al plate were successfully welded without visible defects or cracks and an approximately 4 µm thick transition layer was formed at the joining interface. The elements mixed and formed intermetallic compounds at the transition layer. The simulation results verified the weldability of Fe-based amorphous foil and Al plates, which are in good agreement with experimental results. |
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AbstractList | The joining of amorphous alloys and common metals has been hot subjects of abundant studies in recent years. Nevertheless, the crystallization and fracture of amorphous alloy are still big challenges during the joining process. This paper presents an innovatively underwater explosive welding method to weld the Fe-based amorphous foil and Aluminum 1060. The interfacial microstructure was characterized using the optical microscopy (OM), field emission scanning electron microscopy (FSEM) and micro X-Ray diffraction (XRD). Meanwhile, the underwater explosive welding process was simulated using smoothed particle hydrodynamics (SPH) method by ANSYS/AUTODYN software. The experimental results indicated that the Fe-based amorphous foil and Al plate were successfully welded without visible defects or cracks and an approximately 4 µm thick transition layer was formed at the joining interface. The elements mixed and formed intermetallic compounds at the transition layer. The simulation results verified the weldability of Fe-based amorphous foil and Al plates, which are in good agreement with experimental results. |
Author | Yanlong, Chen Cheng, Zhai Wei, Yang Xiaojie, Li Hanliang, Liang Jiwei, Dong Ning, Luo |
Author_xml | – sequence: 1 givenname: Liang surname: Hanliang fullname: Hanliang, Liang organization: China University of Mining and Technology – sequence: 2 givenname: Luo surname: Ning fullname: Ning, Luo email: nluo@cumt.edu.cn organization: China University of Mining and Technology – sequence: 3 givenname: Chen surname: Yanlong fullname: Yanlong, Chen organization: China University of Mining and Technology – sequence: 4 givenname: Dong surname: Jiwei fullname: Jiwei, Dong organization: China University of Mining and Technology – sequence: 5 givenname: Zhai surname: Cheng fullname: Cheng, Zhai organization: China University of Mining and Technology – sequence: 6 givenname: Yang surname: Wei fullname: Wei, Yang organization: China University of Mining and Technology – sequence: 7 givenname: Li surname: Xiaojie fullname: Xiaojie, Li organization: Dalian University of Technology |
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SubjectTerms | composite material Fe-based amorphous foil interfacial microstructure numerical simulation underwater explosive welding |
Title | Experimental and numerical simulation study of Fe-based amorphous foil/Al-1060 composites fabricated by an underwater explosive welding method |
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