Numerical Investigation of an Explosive Welding of Ti/Cu Plates Based on a Meshfree Method

Development of a reliable numerical model capturing major physical mechanisms controlling explosive welding and considering properties of all process components i.e. base plate and flyer plate is the goal of the paper. To properly replicate materials behavior under these severe conditions a meshfree...

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Main Authors: M. Mojżeszko, K. Perzyński, M. Sionkowski, H. Paul, Ł. Madej
Format: Article
Language:English
Published: Polish Academy of Sciences 2020-05-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:https://journals.pan.pl/Content/116046/PDF/AMM-2020-2-23-Perzynski.pdf
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author M. Mojżeszko
K. Perzyński
M. Sionkowski
H. Paul
Ł. Madej
author_facet M. Mojżeszko
K. Perzyński
M. Sionkowski
H. Paul
Ł. Madej
author_sort M. Mojżeszko
collection DOAJ
description Development of a reliable numerical model capturing major physical mechanisms controlling explosive welding and considering properties of all process components i.e. base plate and flyer plate is the goal of the paper. To properly replicate materials behavior under these severe conditions a meshfree approach, namely Smooth Particle Hydrodynamics (SPH), was used to discretize the computational domain. The model is based on the Mie-Gruneisen shock equation of state applied to the Ti/Cu system as a case study. Examples of results in the form of velocity, equivalent stress, equivalent strain, and pressure fields are presented within the paper.
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spelling doaj.art-34ff1fb86dfb4be88e50c351c737cc592022-12-22T04:00:27ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092020-05-01vol. 65No 2707711https://doi.org/10.24425/amm.2020.132809Numerical Investigation of an Explosive Welding of Ti/Cu Plates Based on a Meshfree MethodM. MojżeszkoK. PerzyńskiM. SionkowskiH. Paulhttps://orcid.org/0000-0003-4107-982XŁ. MadejDevelopment of a reliable numerical model capturing major physical mechanisms controlling explosive welding and considering properties of all process components i.e. base plate and flyer plate is the goal of the paper. To properly replicate materials behavior under these severe conditions a meshfree approach, namely Smooth Particle Hydrodynamics (SPH), was used to discretize the computational domain. The model is based on the Mie-Gruneisen shock equation of state applied to the Ti/Cu system as a case study. Examples of results in the form of velocity, equivalent stress, equivalent strain, and pressure fields are presented within the paper.https://journals.pan.pl/Content/116046/PDF/AMM-2020-2-23-Perzynski.pdfexplosive weldingcelsphdigital material representation
spellingShingle M. Mojżeszko
K. Perzyński
M. Sionkowski
H. Paul
Ł. Madej
Numerical Investigation of an Explosive Welding of Ti/Cu Plates Based on a Meshfree Method
Archives of Metallurgy and Materials
explosive welding
cel
sph
digital material representation
title Numerical Investigation of an Explosive Welding of Ti/Cu Plates Based on a Meshfree Method
title_full Numerical Investigation of an Explosive Welding of Ti/Cu Plates Based on a Meshfree Method
title_fullStr Numerical Investigation of an Explosive Welding of Ti/Cu Plates Based on a Meshfree Method
title_full_unstemmed Numerical Investigation of an Explosive Welding of Ti/Cu Plates Based on a Meshfree Method
title_short Numerical Investigation of an Explosive Welding of Ti/Cu Plates Based on a Meshfree Method
title_sort numerical investigation of an explosive welding of ti cu plates based on a meshfree method
topic explosive welding
cel
sph
digital material representation
url https://journals.pan.pl/Content/116046/PDF/AMM-2020-2-23-Perzynski.pdf
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AT msionkowski numericalinvestigationofanexplosiveweldingofticuplatesbasedonameshfreemethod
AT hpaul numericalinvestigationofanexplosiveweldingofticuplatesbasedonameshfreemethod
AT łmadej numericalinvestigationofanexplosiveweldingofticuplatesbasedonameshfreemethod