Effect of Initial Structural State on Formation of Structure and Mechanical Properties of Steels Under ECAP
The effect of preliminary heat treatment and equal-channel angular pressing (ECAP) in a stage die on the microstructure and mechanical properties of steels 45 and 35KhM is studied. The grain size, the microhardness, and the strength and ductility characteristics of the steels after the ECAP are dete...
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Published in | Metal science and heat treatment Vol. 59; no. 11-12; pp. 786 - 792 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
New York
Springer US
01.03.2018
Springer Springer Nature B.V |
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Abstract | The effect of preliminary heat treatment and equal-channel angular pressing (ECAP) in a stage die on the microstructure and mechanical properties of steels 45 and 35KhM is studied. The grain size, the microhardness, and the strength and ductility characteristics of the steels after the ECAP are determined. The suggested modes of thermomechanical treatment improve the combination of the properties of the steels studied. |
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AbstractList | The effect of preliminary heat treatment and equal-channel angular pressing (ECAP) in a stage die on the microstructure and mechanical properties of steels 45 and 35KhM is studied. The grain size, the microhardness, and the strength and ductility characteristics of the steels after the ECAP are determined. The suggested modes of thermomechanical treatment improve the combination of the properties of the steels studied. |
Audience | Academic |
Author | Kurapov, G. G. Volokitina, I. E. |
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Copyright | Springer Science+Business Media, LLC, part of Springer Nature 2018 COPYRIGHT 2018 Springer Metal Science and Heat Treatment is a copyright of Springer, (2018). All Rights Reserved. |
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Keywords | equal-channel angular pressing steel preliminary heat treatment microstructure final heat treatment mechanical properties |
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References | A. B. Naizabekov, S. N. Lezhnev, and I. E. Volokitina, “Variation of the microstructure and mechanical properties of copper under deformation in an equal-channel stage die,” Metalloved. Term. Obrab. Met., No. 5, 12 – 17 (2015). R. Z. Valiev and Kh. Sh Salimgareev, Device for Pressure Treatment of Materials, RF Patent No. 2188091 [in Russian], publ. 27.08.2002. I. M. Makarov, A. V. Nokhrin, V. N. Chuvil’deev, and V. I. Kopylov, “Recrystallization in nano- and microcrystalline materials obtained by methods of severe plastic deformation,” Vest. Nizhegorod. Univ. Im. N. I. Lobachevskogo, No. 1(4), 136 – 151 (2001). KurapovGGOrlovaEPVolokitinaIETurdalievAPlasticity as a physical-chemical process of deformation of crystalline solidsJ. Chem. Technol. Metall.201651451457 227_CR4 GG Kurapov (227_CR3) 2016; 51 227_CR2 227_CR1 |
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SubjectTerms | Analysis Characterization and Evaluation of Materials Chemistry and Materials Science Classical Mechanics Engineering Thermodynamics Equal channel angular pressing Evaluation Heat and Mass Transfer Heat treatment Materials Science Mechanical properties Metallic Materials Microhardness Steel Thermomechanical treatment |
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Title | Effect of Initial Structural State on Formation of Structure and Mechanical Properties of Steels Under ECAP |
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