Numerical Simulations of X22CrMoV12-1 Steel Multilayer Welding

The aim of this paper is to present the procedure test for calibration and validation of the numerical model for X22CrMoV12-1 steel multilayer welding. On the real multilayer weld was described how to arrange the whole experiment in order to obtain not only relevant input data but also verification...

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Main Authors: T. Kik, J. Moravec, I. Novakova
Format: Article
Language:English
Published: Polish Academy of Sciences 2019-12-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:https://journals.pan.pl/Content/113599/PDF/AMM-2019-4-30-Kik.pdf
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author T. Kik
J. Moravec
I. Novakova
author_facet T. Kik
J. Moravec
I. Novakova
author_sort T. Kik
collection DOAJ
description The aim of this paper is to present the procedure test for calibration and validation of the numerical model for X22CrMoV12-1 steel multilayer welding. On the real multilayer weld was described how to arrange the whole experiment in order to obtain not only relevant input data but also verification data. Tests on a specially prepared specimen, welded with 8 beads in 4 layers, allows to determine the actual geometry of the single welded beads, registration of welding thermal cycles and the hardness distribution in successively deposited beads together with determining the heat influence of subsequent layers. The results of the real welding tests were compared with the results obtained from the numerical simulations and extended by the calculated stresses and distortions distributions of the tested specimen. A new, improved hardness prediction algorithm for high-alloy martensitic and bainitic steels was also proposed.
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spelling doaj.art-22f96769053f40af907bbffaf9056a192022-12-22T02:48:50ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092019-12-01vol. 64No 414411448https://doi.org/10.24425/amm.2019.130111Numerical Simulations of X22CrMoV12-1 Steel Multilayer WeldingT. Kikhttps://orcid.org/0000-0001-8153-4853J. MoravecI. NovakovaThe aim of this paper is to present the procedure test for calibration and validation of the numerical model for X22CrMoV12-1 steel multilayer welding. On the real multilayer weld was described how to arrange the whole experiment in order to obtain not only relevant input data but also verification data. Tests on a specially prepared specimen, welded with 8 beads in 4 layers, allows to determine the actual geometry of the single welded beads, registration of welding thermal cycles and the hardness distribution in successively deposited beads together with determining the heat influence of subsequent layers. The results of the real welding tests were compared with the results obtained from the numerical simulations and extended by the calculated stresses and distortions distributions of the tested specimen. A new, improved hardness prediction algorithm for high-alloy martensitic and bainitic steels was also proposed.https://journals.pan.pl/Content/113599/PDF/AMM-2019-4-30-Kik.pdfnumerical simulationx22crmov12-1weldingsysweldhardness prediction
spellingShingle T. Kik
J. Moravec
I. Novakova
Numerical Simulations of X22CrMoV12-1 Steel Multilayer Welding
Archives of Metallurgy and Materials
numerical simulation
x22crmov12-1
welding
sysweld
hardness prediction
title Numerical Simulations of X22CrMoV12-1 Steel Multilayer Welding
title_full Numerical Simulations of X22CrMoV12-1 Steel Multilayer Welding
title_fullStr Numerical Simulations of X22CrMoV12-1 Steel Multilayer Welding
title_full_unstemmed Numerical Simulations of X22CrMoV12-1 Steel Multilayer Welding
title_short Numerical Simulations of X22CrMoV12-1 Steel Multilayer Welding
title_sort numerical simulations of x22crmov12 1 steel multilayer welding
topic numerical simulation
x22crmov12-1
welding
sysweld
hardness prediction
url https://journals.pan.pl/Content/113599/PDF/AMM-2019-4-30-Kik.pdf
work_keys_str_mv AT tkik numericalsimulationsofx22crmov121steelmultilayerwelding
AT jmoravec numericalsimulationsofx22crmov121steelmultilayerwelding
AT inovakova numericalsimulationsofx22crmov121steelmultilayerwelding