Analytical model of stress field in submerged arc welding butt joint with thorough penetration

Analytical model of temporary and residual stresses for butt welding with thorough penetration was described assuming planar section hypothesis and using integral equations of stress equilibrium of the bar and simple Hooke’s law. In solution the effect of phase transformations (structure changes and...

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Main Authors: Winczek Jerzy, Parkitny Ryszard, Makles Krzysztof, Kukuryk Marcin
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Subjects:
Online Access:https://doi.org/10.1051/matecconf/201815702056
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spelling doaj-3d35f68a16514b6993ef7023502f20672021-02-02T03:35:13ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011570205610.1051/matecconf/201815702056matecconf_mms2018_02056Analytical model of stress field in submerged arc welding butt joint with thorough penetrationWinczek JerzyParkitny RyszardMakles KrzysztofKukuryk MarcinAnalytical model of temporary and residual stresses for butt welding with thorough penetration was described assuming planar section hypothesis and using integral equations of stress equilibrium of the bar and simple Hooke’s law. In solution the effect of phase transformations (structure changes and structural strains) has been taken into account. Phase transformations during heating are limited by temperature values at the beginning and at the end of austenitic transformation, depending on chemical composition of steel while the progress of phase transformations during cooling is determined on the basis of TTT-welding diagram. Temperature values at the beginning and at the end of transformation are conditioned by the speed of heating. Kinetics of diffusional transformation is described basing on Johnson-Mehl-Avrami-Kolmogorov equation, while martensitic transformation, basing on Koistinen-Marburger equation. Stresses in elasto-plastic state are determined by iteration, using elastic solutions method with changeable longitudinal modulus of elasticity, conditioned by stress-strain curve. Computations of stress field have been conducted for one-side butt welded of two steel flats made from S235 steel. It has enabled a clear interpretation of influence of temperature field and phase transformation on stresses caused by welding using Submerged Arc Welding (SAW) method.https://doi.org/10.1051/matecconf/201815702056modelingweldingtemperature fieldphase transformationsstresses
collection DOAJ
language English
format Article
sources DOAJ
author Winczek Jerzy
Parkitny Ryszard
Makles Krzysztof
Kukuryk Marcin
spellingShingle Winczek Jerzy
Parkitny Ryszard
Makles Krzysztof
Kukuryk Marcin
Analytical model of stress field in submerged arc welding butt joint with thorough penetration
MATEC Web of Conferences
modeling
welding
temperature field
phase transformations
stresses
author_facet Winczek Jerzy
Parkitny Ryszard
Makles Krzysztof
Kukuryk Marcin
author_sort Winczek Jerzy
title Analytical model of stress field in submerged arc welding butt joint with thorough penetration
title_short Analytical model of stress field in submerged arc welding butt joint with thorough penetration
title_full Analytical model of stress field in submerged arc welding butt joint with thorough penetration
title_fullStr Analytical model of stress field in submerged arc welding butt joint with thorough penetration
title_full_unstemmed Analytical model of stress field in submerged arc welding butt joint with thorough penetration
title_sort analytical model of stress field in submerged arc welding butt joint with thorough penetration
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Analytical model of temporary and residual stresses for butt welding with thorough penetration was described assuming planar section hypothesis and using integral equations of stress equilibrium of the bar and simple Hooke’s law. In solution the effect of phase transformations (structure changes and structural strains) has been taken into account. Phase transformations during heating are limited by temperature values at the beginning and at the end of austenitic transformation, depending on chemical composition of steel while the progress of phase transformations during cooling is determined on the basis of TTT-welding diagram. Temperature values at the beginning and at the end of transformation are conditioned by the speed of heating. Kinetics of diffusional transformation is described basing on Johnson-Mehl-Avrami-Kolmogorov equation, while martensitic transformation, basing on Koistinen-Marburger equation. Stresses in elasto-plastic state are determined by iteration, using elastic solutions method with changeable longitudinal modulus of elasticity, conditioned by stress-strain curve. Computations of stress field have been conducted for one-side butt welded of two steel flats made from S235 steel. It has enabled a clear interpretation of influence of temperature field and phase transformation on stresses caused by welding using Submerged Arc Welding (SAW) method.
topic modeling
welding
temperature field
phase transformations
stresses
url https://doi.org/10.1051/matecconf/201815702056
work_keys_str_mv AT winczekjerzy analyticalmodelofstressfieldinsubmergedarcweldingbuttjointwiththoroughpenetration
AT parkitnyryszard analyticalmodelofstressfieldinsubmergedarcweldingbuttjointwiththoroughpenetration
AT makleskrzysztof analyticalmodelofstressfieldinsubmergedarcweldingbuttjointwiththoroughpenetration
AT kukurykmarcin analyticalmodelofstressfieldinsubmergedarcweldingbuttjointwiththoroughpenetration
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