Tailoring Extra-Strength of a TWIP Steel by Combination of Multi-Pass Equal-Channel Angular Pressing and Warm Rolling
Increasing the yield stress of twinning-induced plasticity (TWIP) steels is a demanding task for modern materials science. This aim can be achieved by microstructure refinement induced by heavy straining. We feature the microstructural evolution and mechanical performance of a high-manganese TWIP st...
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doaj-76f943d7780844a29e847779493e3b182021-03-23T00:04:49ZengMDPI AGMetals2075-47012021-03-011151851810.3390/met11030518Tailoring Extra-Strength of a TWIP Steel by Combination of Multi-Pass Equal-Channel Angular Pressing and Warm RollingMarina Abramova0Arseniy Raab1Ruslan Z. Valiev2Anna Khannanova3Chong Soo Lee4Jae Nam Kim5Gyeong Hyeon Jang6Jung Gi Kim7Hyoung Seop Kim8Oliver Renk9Nariman Enikeev10Institute for Physics of Advanced Materials, Ufa State Aviation Technical University, K. Marx 12, 450008 Ufa, RussiaInstitute for Physics of Advanced Materials, Ufa State Aviation Technical University, K. Marx 12, 450008 Ufa, RussiaInstitute for Physics of Advanced Materials, Ufa State Aviation Technical University, K. Marx 12, 450008 Ufa, RussiaInstitute for Physics of Advanced Materials, Ufa State Aviation Technical University, K. Marx 12, 450008 Ufa, RussiaGraduate Institute of Ferrous Technology, Pohang University of Science and Technology, Pohang 37673, KoreaGraduate Institute of Ferrous Technology, Pohang University of Science and Technology, Pohang 37673, KoreaGraduate Institute of Ferrous Technology, Pohang University of Science and Technology, Pohang 37673, KoreaDepartment of Materials Engineering and Convergence Technology (Center for K-Metals), Gyeongsang National University, Jinju 52828, KoreaDepartment of Materials Science and Engineering, Pohang University of Science and Technology, Pohang 37673, KoreaErich Schmid Institute of Materials Science, Austrian Academy of Sciences, 8700 Leoben, AustriaInstitute for Physics of Advanced Materials, Ufa State Aviation Technical University, K. Marx 12, 450008 Ufa, RussiaIncreasing the yield stress of twinning-induced plasticity (TWIP) steels is a demanding task for modern materials science. This aim can be achieved by microstructure refinement induced by heavy straining. We feature the microstructural evolution and mechanical performance of a high-manganese TWIP steel subjected to deformation treatment by different combinations of equal channel angular pressing (ECAP) and rolling at different temperatures. The effect of microstructure on the tensile properties of the steel subjected to the multi-pass ECAP process and to subsequent rolling is reported as well. We show that the combined deformation procedure allows us to further increase the strength of the processed workpieces due to a gradual transition from a banded structure to a heterogeneous hierarchical microstructure consisting of fragments, dislocation configurations and nano- and micro-twins colonies. Rolling of multi-pass ECAP specimens at 375 °C allowed us to achieve an extraordinary strength, the highest among all the investigated cases, while the best trade-off between yield strength and elongation to failure was reached using multi-pass ECAP followed by rolling at 500 °C. This study shows a great potential of using combined deformation techniques to enhance the mechanical performance of TWIP steels.https://www.mdpi.com/2075-4701/11/3/518TWIP steelequal-channel angular pressingrollingultrafine-grained materialsmicrostructuremechanical properties |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marina Abramova Arseniy Raab Ruslan Z. Valiev Anna Khannanova Chong Soo Lee Jae Nam Kim Gyeong Hyeon Jang Jung Gi Kim Hyoung Seop Kim Oliver Renk Nariman Enikeev |
spellingShingle |
Marina Abramova Arseniy Raab Ruslan Z. Valiev Anna Khannanova Chong Soo Lee Jae Nam Kim Gyeong Hyeon Jang Jung Gi Kim Hyoung Seop Kim Oliver Renk Nariman Enikeev Tailoring Extra-Strength of a TWIP Steel by Combination of Multi-Pass Equal-Channel Angular Pressing and Warm Rolling Metals TWIP steel equal-channel angular pressing rolling ultrafine-grained materials microstructure mechanical properties |
author_facet |
Marina Abramova Arseniy Raab Ruslan Z. Valiev Anna Khannanova Chong Soo Lee Jae Nam Kim Gyeong Hyeon Jang Jung Gi Kim Hyoung Seop Kim Oliver Renk Nariman Enikeev |
author_sort |
Marina Abramova |
title |
Tailoring Extra-Strength of a TWIP Steel by Combination of Multi-Pass Equal-Channel Angular Pressing and Warm Rolling |
title_short |
Tailoring Extra-Strength of a TWIP Steel by Combination of Multi-Pass Equal-Channel Angular Pressing and Warm Rolling |
title_full |
Tailoring Extra-Strength of a TWIP Steel by Combination of Multi-Pass Equal-Channel Angular Pressing and Warm Rolling |
title_fullStr |
Tailoring Extra-Strength of a TWIP Steel by Combination of Multi-Pass Equal-Channel Angular Pressing and Warm Rolling |
title_full_unstemmed |
Tailoring Extra-Strength of a TWIP Steel by Combination of Multi-Pass Equal-Channel Angular Pressing and Warm Rolling |
title_sort |
tailoring extra-strength of a twip steel by combination of multi-pass equal-channel angular pressing and warm rolling |
publisher |
MDPI AG |
series |
Metals |
issn |
2075-4701 |
publishDate |
2021-03-01 |
description |
Increasing the yield stress of twinning-induced plasticity (TWIP) steels is a demanding task for modern materials science. This aim can be achieved by microstructure refinement induced by heavy straining. We feature the microstructural evolution and mechanical performance of a high-manganese TWIP steel subjected to deformation treatment by different combinations of equal channel angular pressing (ECAP) and rolling at different temperatures. The effect of microstructure on the tensile properties of the steel subjected to the multi-pass ECAP process and to subsequent rolling is reported as well. We show that the combined deformation procedure allows us to further increase the strength of the processed workpieces due to a gradual transition from a banded structure to a heterogeneous hierarchical microstructure consisting of fragments, dislocation configurations and nano- and micro-twins colonies. Rolling of multi-pass ECAP specimens at 375 °C allowed us to achieve an extraordinary strength, the highest among all the investigated cases, while the best trade-off between yield strength and elongation to failure was reached using multi-pass ECAP followed by rolling at 500 °C. This study shows a great potential of using combined deformation techniques to enhance the mechanical performance of TWIP steels. |
topic |
TWIP steel equal-channel angular pressing rolling ultrafine-grained materials microstructure mechanical properties |
url |
https://www.mdpi.com/2075-4701/11/3/518 |
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