Analysis of fracture mechanism of cast steel under hydrostatic pressure

Plastic deformation and damage evolution in low-carbon cast steel containing non-metallic inclusions are analyzed experimentally and numerically. The cast steel was subjected to the heat treatment: normalizing, oil quenching and tempering. Tests were carried out at hydrostatic pressure of 500 MPa an...

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Main Authors: J. Lachowski, J. Borowiecka-Jamrozek
Format: Article
Language:English
Published: Croatian Metallurgical Society 2022-01-01
Series:Metalurgija
Subjects:
Online Access:https://hrcak.srce.hr/file/397164
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author J. Lachowski
J. Borowiecka-Jamrozek
author_facet J. Lachowski
J. Borowiecka-Jamrozek
author_sort J. Lachowski
collection DOAJ
description Plastic deformation and damage evolution in low-carbon cast steel containing non-metallic inclusions are analyzed experimentally and numerically. The cast steel was subjected to the heat treatment: normalizing, oil quenching and tempering. Tests were carried out at hydrostatic pressure of 500 MPa and 1 000 MPa. In the tensile test the tensile strength, elongation and reduction of area were examined. Fractography of the specimens was carried out to observe fracture mechanisms. The finite elements method has been used for modelling of deformation of the specimens. The computer simulation was performed using ABAQUS system. The computed output was compared with experimental results
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spelling doaj.art-533407bc04854952bcd84e95eeab7dce2022-12-21T19:23:56ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762022-01-01613-4816818Analysis of fracture mechanism of cast steel under hydrostatic pressureJ. Lachowski0J. Borowiecka-Jamrozek1Kielce University of Technology, PolandKielce University of Technology, PolandPlastic deformation and damage evolution in low-carbon cast steel containing non-metallic inclusions are analyzed experimentally and numerically. The cast steel was subjected to the heat treatment: normalizing, oil quenching and tempering. Tests were carried out at hydrostatic pressure of 500 MPa and 1 000 MPa. In the tensile test the tensile strength, elongation and reduction of area were examined. Fractography of the specimens was carried out to observe fracture mechanisms. The finite elements method has been used for modelling of deformation of the specimens. The computer simulation was performed using ABAQUS system. The computed output was compared with experimental resultshttps://hrcak.srce.hr/file/397164cast steelheat treatmentmetallographymechanical propertiescomputer modelling
spellingShingle J. Lachowski
J. Borowiecka-Jamrozek
Analysis of fracture mechanism of cast steel under hydrostatic pressure
Metalurgija
cast steel
heat treatment
metallography
mechanical properties
computer modelling
title Analysis of fracture mechanism of cast steel under hydrostatic pressure
title_full Analysis of fracture mechanism of cast steel under hydrostatic pressure
title_fullStr Analysis of fracture mechanism of cast steel under hydrostatic pressure
title_full_unstemmed Analysis of fracture mechanism of cast steel under hydrostatic pressure
title_short Analysis of fracture mechanism of cast steel under hydrostatic pressure
title_sort analysis of fracture mechanism of cast steel under hydrostatic pressure
topic cast steel
heat treatment
metallography
mechanical properties
computer modelling
url https://hrcak.srce.hr/file/397164
work_keys_str_mv AT jlachowski analysisoffracturemechanismofcaststeelunderhydrostaticpressure
AT jborowieckajamrozek analysisoffracturemechanismofcaststeelunderhydrostaticpressure