The Effect Of Strain Rate On The Mechanical Properties And Microstructure Of The High-Mn Steel After Dynamic Deformation Tests

The paper presents results of dynamic tensile investigations of high-manganese Fe – 20 wt.% Mn – 3 wt.% Al – 3 wt.% Si – 0.2 wt.% steel. The research was carried out on a flywheel machine, which enables to perform dynamic tensile tests and impact bending with a linear velocity of the enforcing eleme...

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Main Authors: Jabłońska M.B., Śmiglewicz A., Niewielski G.
Format: Article
Language:English
Published: Polish Academy of Sciences 2015-06-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:http://www.degruyter.com/view/j/amm.2015.60.issue-2/amm-2015-0176/amm-2015-0176.xml?format=INT
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spelling doaj-b5309cca01214e098487ef19346c5ade2020-11-25T03:33:53ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092015-06-0160257758010.1515/amm-2015-0176amm-2015-0176The Effect Of Strain Rate On The Mechanical Properties And Microstructure Of The High-Mn Steel After Dynamic Deformation TestsJabłońska M.B.0Śmiglewicz A.1Niewielski G.2 SILESIAN UNIVERSITY OF TECHNOLOGY, FACULTY OF MATERIALS ENGINEERING AND METALLURGY, INSTITUTE OF MATERIALS SCIENCE, 40-019 KATOWICE, POLAND SILESIAN UNIVERSITY OF TECHNOLOGY, FACULTY OF MATERIALS ENGINEERING AND METALLURGY, INSTITUTE OF MATERIALS SCIENCE, 40-019 KATOWICE, POLAND SILESIAN UNIVERSITY OF TECHNOLOGY, FACULTY OF MATERIALS ENGINEERING AND METALLURGY, INSTITUTE OF MATERIALS SCIENCE, 40-019 KATOWICE, POLANDThe paper presents results of dynamic tensile investigations of high-manganese Fe – 20 wt.% Mn – 3 wt.% Al – 3 wt.% Si – 0.2 wt.% steel. The research was carried out on a flywheel machine, which enables to perform dynamic tensile tests and impact bending with a linear velocity of the enforcing element in the range of 5÷40 m/s. It was found that the studied steel was characterized by very good mechanical properties. Strength of the tested materials was determined in the static tensile test and dynamic deformation test, while its hardness was measured with the Vickers hardness test method. The surface of fractures that were created in the areas where the sample was torn were analyzed. These fractures indicate the presence of transcrystalline ductile fractures. Fractographic tests were performed with the use of a scanning electron microscope. The structure was analyzed by light optical microscopy. Substructure studies revealed occurrence of mechanical twinning induced by high strain rates. A detailed analysis of the structure was performed with the use of a transmission scanning electron microscope STEM.http://www.degruyter.com/view/j/amm.2015.60.issue-2/amm-2015-0176/amm-2015-0176.xml?format=INThigh-manganese steeldynamic deformation teststrain rateimpact strengthmechanical twinningstructure
collection DOAJ
language English
format Article
sources DOAJ
author Jabłońska M.B.
Śmiglewicz A.
Niewielski G.
spellingShingle Jabłońska M.B.
Śmiglewicz A.
Niewielski G.
The Effect Of Strain Rate On The Mechanical Properties And Microstructure Of The High-Mn Steel After Dynamic Deformation Tests
Archives of Metallurgy and Materials
high-manganese steel
dynamic deformation test
strain rate
impact strength
mechanical twinning
structure
author_facet Jabłońska M.B.
Śmiglewicz A.
Niewielski G.
author_sort Jabłońska M.B.
title The Effect Of Strain Rate On The Mechanical Properties And Microstructure Of The High-Mn Steel After Dynamic Deformation Tests
title_short The Effect Of Strain Rate On The Mechanical Properties And Microstructure Of The High-Mn Steel After Dynamic Deformation Tests
title_full The Effect Of Strain Rate On The Mechanical Properties And Microstructure Of The High-Mn Steel After Dynamic Deformation Tests
title_fullStr The Effect Of Strain Rate On The Mechanical Properties And Microstructure Of The High-Mn Steel After Dynamic Deformation Tests
title_full_unstemmed The Effect Of Strain Rate On The Mechanical Properties And Microstructure Of The High-Mn Steel After Dynamic Deformation Tests
title_sort effect of strain rate on the mechanical properties and microstructure of the high-mn steel after dynamic deformation tests
publisher Polish Academy of Sciences
series Archives of Metallurgy and Materials
issn 2300-1909
publishDate 2015-06-01
description The paper presents results of dynamic tensile investigations of high-manganese Fe – 20 wt.% Mn – 3 wt.% Al – 3 wt.% Si – 0.2 wt.% steel. The research was carried out on a flywheel machine, which enables to perform dynamic tensile tests and impact bending with a linear velocity of the enforcing element in the range of 5÷40 m/s. It was found that the studied steel was characterized by very good mechanical properties. Strength of the tested materials was determined in the static tensile test and dynamic deformation test, while its hardness was measured with the Vickers hardness test method. The surface of fractures that were created in the areas where the sample was torn were analyzed. These fractures indicate the presence of transcrystalline ductile fractures. Fractographic tests were performed with the use of a scanning electron microscope. The structure was analyzed by light optical microscopy. Substructure studies revealed occurrence of mechanical twinning induced by high strain rates. A detailed analysis of the structure was performed with the use of a transmission scanning electron microscope STEM.
topic high-manganese steel
dynamic deformation test
strain rate
impact strength
mechanical twinning
structure
url http://www.degruyter.com/view/j/amm.2015.60.issue-2/amm-2015-0176/amm-2015-0176.xml?format=INT
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