Atomic motion behavior calculation and bonding mechanism analysis of explosive welding of high-strength and high-hardness titanium alloy Ti6Al4V/aluminum alloy 7075

The explosive welding technology of titanium alloy Ti6Al4V/aluminum alloy 7075 is the most valuable research problem in the field of Ti/Al explosive welding. In this paper, the smooth particle hydrodynamics and molecular dynamics algorithms are used to conduct multi-scale numerical calculations on t...

Full description

Bibliographic Details
Main Authors: Wu Xiaoming, Shi Changgen, Wang Haitao, Luo Xuchuan, Sun Zerui
Format: Article
Language:English
Published: IOP Publishing 2023-01-01
Series:Materials Research Express
Subjects:
Online Access:https://doi.org/10.1088/2053-1591/ad019f
_version_ 1797654471074906112
author Wu Xiaoming
Shi Changgen
Wang Haitao
Luo Xuchuan
Sun Zerui
author_facet Wu Xiaoming
Shi Changgen
Wang Haitao
Luo Xuchuan
Sun Zerui
author_sort Wu Xiaoming
collection DOAJ
description The explosive welding technology of titanium alloy Ti6Al4V/aluminum alloy 7075 is the most valuable research problem in the field of Ti/Al explosive welding. In this paper, the smooth particle hydrodynamics and molecular dynamics algorithms are used to conduct multi-scale numerical calculations on the explosive welding of Ti6Al4V and 7075. The interface morphology, interface atomic movement, lattice changes and crystal defects are comprehensively analyzed. With the calculation as a reference, the Ti6Al4V/7075 composite with a flat interface is prepared. The calculation results indicate that with the transformation of titanium aluminum crystal structure, a large number of various dislocations, mainly 1/6〈110〉dislocations, are generated on the titanium side; During explosive welding, uniform and stable element diffusion occurred. Element diffusion mainly occurred in the unloading stage when the pressure was 0. The melting zone and ablation zone were composed of TiAl and TiAl _3 , respectively; The fundamental reason for the combination of Ti6Al4V/7075 is the diffusion of elements and the solid-phase binding of atoms.
first_indexed 2024-03-11T16:59:57Z
format Article
id doaj.art-0732d76e16384d168560bfeb55a2334d
institution Directory Open Access Journal
issn 2053-1591
language English
last_indexed 2024-03-11T16:59:57Z
publishDate 2023-01-01
publisher IOP Publishing
record_format Article
series Materials Research Express
spelling doaj.art-0732d76e16384d168560bfeb55a2334d2023-10-20T11:33:35ZengIOP PublishingMaterials Research Express2053-15912023-01-01101010651810.1088/2053-1591/ad019fAtomic motion behavior calculation and bonding mechanism analysis of explosive welding of high-strength and high-hardness titanium alloy Ti6Al4V/aluminum alloy 7075Wu Xiaoming0Shi Changgen1https://orcid.org/0000-0003-4412-7911Wang Haitao2Luo Xuchuan3Sun Zerui4Army Engineering University of PLA , Nanjing, 210007, People’s Republic of ChinaArmy Engineering University of PLA , Nanjing, 210007, People’s Republic of ChinaArmy Engineering University of PLA , Nanjing, 210007, People’s Republic of ChinaArmy Engineering University of PLA , Nanjing, 210007, People’s Republic of ChinaArmy Engineering University of PLA , Nanjing, 210007, People’s Republic of ChinaThe explosive welding technology of titanium alloy Ti6Al4V/aluminum alloy 7075 is the most valuable research problem in the field of Ti/Al explosive welding. In this paper, the smooth particle hydrodynamics and molecular dynamics algorithms are used to conduct multi-scale numerical calculations on the explosive welding of Ti6Al4V and 7075. The interface morphology, interface atomic movement, lattice changes and crystal defects are comprehensively analyzed. With the calculation as a reference, the Ti6Al4V/7075 composite with a flat interface is prepared. The calculation results indicate that with the transformation of titanium aluminum crystal structure, a large number of various dislocations, mainly 1/6〈110〉dislocations, are generated on the titanium side; During explosive welding, uniform and stable element diffusion occurred. Element diffusion mainly occurred in the unloading stage when the pressure was 0. The melting zone and ablation zone were composed of TiAl and TiAl _3 , respectively; The fundamental reason for the combination of Ti6Al4V/7075 is the diffusion of elements and the solid-phase binding of atoms.https://doi.org/10.1088/2053-1591/ad019fexplosive weldingmolecular dynamicsbinding mechanismfinite element analysis (FEA)SPH
spellingShingle Wu Xiaoming
Shi Changgen
Wang Haitao
Luo Xuchuan
Sun Zerui
Atomic motion behavior calculation and bonding mechanism analysis of explosive welding of high-strength and high-hardness titanium alloy Ti6Al4V/aluminum alloy 7075
Materials Research Express
explosive welding
molecular dynamics
binding mechanism
finite element analysis (FEA)
SPH
title Atomic motion behavior calculation and bonding mechanism analysis of explosive welding of high-strength and high-hardness titanium alloy Ti6Al4V/aluminum alloy 7075
title_full Atomic motion behavior calculation and bonding mechanism analysis of explosive welding of high-strength and high-hardness titanium alloy Ti6Al4V/aluminum alloy 7075
title_fullStr Atomic motion behavior calculation and bonding mechanism analysis of explosive welding of high-strength and high-hardness titanium alloy Ti6Al4V/aluminum alloy 7075
title_full_unstemmed Atomic motion behavior calculation and bonding mechanism analysis of explosive welding of high-strength and high-hardness titanium alloy Ti6Al4V/aluminum alloy 7075
title_short Atomic motion behavior calculation and bonding mechanism analysis of explosive welding of high-strength and high-hardness titanium alloy Ti6Al4V/aluminum alloy 7075
title_sort atomic motion behavior calculation and bonding mechanism analysis of explosive welding of high strength and high hardness titanium alloy ti6al4v aluminum alloy 7075
topic explosive welding
molecular dynamics
binding mechanism
finite element analysis (FEA)
SPH
url https://doi.org/10.1088/2053-1591/ad019f
work_keys_str_mv AT wuxiaoming atomicmotionbehaviorcalculationandbondingmechanismanalysisofexplosiveweldingofhighstrengthandhighhardnesstitaniumalloyti6al4valuminumalloy7075
AT shichanggen atomicmotionbehaviorcalculationandbondingmechanismanalysisofexplosiveweldingofhighstrengthandhighhardnesstitaniumalloyti6al4valuminumalloy7075
AT wanghaitao atomicmotionbehaviorcalculationandbondingmechanismanalysisofexplosiveweldingofhighstrengthandhighhardnesstitaniumalloyti6al4valuminumalloy7075
AT luoxuchuan atomicmotionbehaviorcalculationandbondingmechanismanalysisofexplosiveweldingofhighstrengthandhighhardnesstitaniumalloyti6al4valuminumalloy7075
AT sunzerui atomicmotionbehaviorcalculationandbondingmechanismanalysisofexplosiveweldingofhighstrengthandhighhardnesstitaniumalloyti6al4valuminumalloy7075