Regularities of Formation of Structure, Texture and Properties under the Combined Plastic Deformation of the Low-Carbon and Ultralow-Carbon Steels for Cold Press Forming

The current paper reports the new solutions intended to enhance the complex of mechanical properties and tendency to the press forming of the hot-rolled low-carbon and ultralow-carbon steels with subsequent cold deformation via upsetting and torsion under hydrostatic pressure (THP). Using state-of-t...

Full description

Bibliographic Details
Main Author: Yu. S. Projdak, V. Z. Kutsova, T. V. Kotova, H. P. Stetsenko, V. V. Prutchykova
Format: Article
Language:English
Published: G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine 2019-06-01
Series:Успехи физики металлов
Online Access:https://doi.org/10.15407/ufm.20.02.213
id doaj-45c42fc95af3472c969a62872f2d4711
record_format Article
spelling doaj-45c42fc95af3472c969a62872f2d47112020-11-25T03:49:35ZengG. V. Kurdyumov Institute for Metal Physics of the N.A.S. of UkraineУспехи физики металлов 1608-10212617-07952019-06-0120221328410.15407/ufm.20.02.213Regularities of Formation of Structure, Texture and Properties under the Combined Plastic Deformation of the Low-Carbon and Ultralow-Carbon Steels for Cold Press FormingYu. S. Projdak, V. Z. Kutsova, T. V. Kotova, H. P. Stetsenko, V. V. PrutchykovaThe current paper reports the new solutions intended to enhance the complex of mechanical properties and tendency to the press forming of the hot-rolled low-carbon and ultralow-carbon steels with subsequent cold deformation via upsetting and torsion under hydrostatic pressure (THP). Using state-of-the-art research methods, the feasibility of forming an ultra-fine-crystalline structure through the combined plastic deformation is established. The dependence of the change in mechanical properties on the structural and textural parameters as well as phase composition is established. This research is the first wherein the mechanical properties have been determined by the method of nanoindentation for the 08пс, 01ЮТ, 01ЮТ(Са), 01ЮТА steels, which were initially hot-rolled and afterwards underwent the cold deformation by the THP method. The increase in the indentation hardness by 2 times (5.5–6.0 GPa) is revealed along with the decrease of the modulus of elasticity by 1.5 times (150–190 GPa), but with the opportunity to sustain the satisfactory ductility (δ = 0.75–0.8). This provides a great suitability to the cold press forming of the steels as compared to their initial hot-rolled state.https://doi.org/10.15407/ufm.20.02.213
collection DOAJ
language English
format Article
sources DOAJ
author Yu. S. Projdak, V. Z. Kutsova, T. V. Kotova, H. P. Stetsenko, V. V. Prutchykova
spellingShingle Yu. S. Projdak, V. Z. Kutsova, T. V. Kotova, H. P. Stetsenko, V. V. Prutchykova
Regularities of Formation of Structure, Texture and Properties under the Combined Plastic Deformation of the Low-Carbon and Ultralow-Carbon Steels for Cold Press Forming
Успехи физики металлов
author_facet Yu. S. Projdak, V. Z. Kutsova, T. V. Kotova, H. P. Stetsenko, V. V. Prutchykova
author_sort Yu. S. Projdak, V. Z. Kutsova, T. V. Kotova, H. P. Stetsenko, V. V. Prutchykova
title Regularities of Formation of Structure, Texture and Properties under the Combined Plastic Deformation of the Low-Carbon and Ultralow-Carbon Steels for Cold Press Forming
title_short Regularities of Formation of Structure, Texture and Properties under the Combined Plastic Deformation of the Low-Carbon and Ultralow-Carbon Steels for Cold Press Forming
title_full Regularities of Formation of Structure, Texture and Properties under the Combined Plastic Deformation of the Low-Carbon and Ultralow-Carbon Steels for Cold Press Forming
title_fullStr Regularities of Formation of Structure, Texture and Properties under the Combined Plastic Deformation of the Low-Carbon and Ultralow-Carbon Steels for Cold Press Forming
title_full_unstemmed Regularities of Formation of Structure, Texture and Properties under the Combined Plastic Deformation of the Low-Carbon and Ultralow-Carbon Steels for Cold Press Forming
title_sort regularities of formation of structure, texture and properties under the combined plastic deformation of the low-carbon and ultralow-carbon steels for cold press forming
publisher G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine
series Успехи физики металлов
issn 1608-1021
2617-0795
publishDate 2019-06-01
description The current paper reports the new solutions intended to enhance the complex of mechanical properties and tendency to the press forming of the hot-rolled low-carbon and ultralow-carbon steels with subsequent cold deformation via upsetting and torsion under hydrostatic pressure (THP). Using state-of-the-art research methods, the feasibility of forming an ultra-fine-crystalline structure through the combined plastic deformation is established. The dependence of the change in mechanical properties on the structural and textural parameters as well as phase composition is established. This research is the first wherein the mechanical properties have been determined by the method of nanoindentation for the 08пс, 01ЮТ, 01ЮТ(Са), 01ЮТА steels, which were initially hot-rolled and afterwards underwent the cold deformation by the THP method. The increase in the indentation hardness by 2 times (5.5–6.0 GPa) is revealed along with the decrease of the modulus of elasticity by 1.5 times (150–190 GPa), but with the opportunity to sustain the satisfactory ductility (δ = 0.75–0.8). This provides a great suitability to the cold press forming of the steels as compared to their initial hot-rolled state.
url https://doi.org/10.15407/ufm.20.02.213
work_keys_str_mv AT yusprojdakvzkutsovatvkotovahpstetsenkovvprutchykova regularitiesofformationofstructuretextureandpropertiesunderthecombinedplasticdeformationofthelowcarbonandultralowcarbonsteelsforcoldpressforming
_version_ 1724494681992069120