Strengthening Mechanisms in a Medium-Carbon Steel Subjected to Thermo-Mechanical Processing

被引:2
作者
Dudko, Valeriy [1 ,2 ]
Yuzbekova, Diana [1 ,2 ]
Kaibyshev, Rustam [1 ]
机构
[1] Russian State Agrarian Univ, Moscow Timiryazev Agr Acad, Lab Adv Steels Agr Machinery, Moscow 127550, Russia
[2] Belgorod State Natl Res Univ, Lab Mech Properties Nanostruct Mat & Superalloys, Belgorod 308015, Russia
来源
APPLIED SCIENCES-BASEL | 2023年 / 13卷 / 17期
关键词
plasticity methods; iron alloys; grains and interfaces; electron microscopy; MICROSTRUCTURE; TEMPERATURE; BEHAVIOR; STRESS;
D O I
10.3390/app13179614
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Strengthening mechanisms were examined in a Fe-0.43C-1.60Si-0.01Mn-1.1Cr-0.95Mo-0.08V-0.05Nb steel exhibiting a yield strength (YS) of 1310 MPa after tempering and 1550 MPa after tempforming. The dislocation strengthening gave a major contribution to the overall YS of the steel in the tempered condition, whereas dispersion strengthening was a major contributor to the YS of the steel in the tempformed condition. High values of dislocation strengthening after tempering were attributed to dislocations composing the lath boundaries. A high density of free dislocations provided nearly the same dislocation strengthening after tempforming. Warm rolling after tempering led to alignment of intercrystallite boundaries along the rolling direction that decreased the interparticle spacing between M23C6 carbides located at these boundaries and thus increased the magnitude of dispersion strengthening. The boundary strengthening contributed to overall YS significantly due to small lath thickness after tempering and nanoscale spacing between lamellar boundaries after tempforming.
引用
收藏
页数:12
相关论文
共 28 条
[1]   Plastic strain localization in metals: origins and consequences [J].
Antolovich, Stephen D. ;
Armstrong, Ronald W. .
PROGRESS IN MATERIALS SCIENCE, 2014, 59 :1-160
[2]  
Argon A.S., 2008, Strengthening Mechanisms in Crystal Plasticity
[3]   Orientation gradients and geometrically necessary dislocations in ultrafine grained dual-phase steels studied by 2D and 3D EBSD [J].
Calcagnotto, Marion ;
Ponge, Dirk ;
Demir, Eralp ;
Raabe, Dierk .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2010, 527 (10-11) :2738-2746
[4]   Microstructure and Strengthening Mechanisms in an HSLA Steel Subjected to Tempforming [J].
Dolzhenko, Anastasiia ;
Pydrin, Alexander ;
Gaidar, Sergey ;
Kaibyshev, Rustam ;
Belyakov, Andrey .
METALS, 2022, 12 (01)
[5]   Tempforming as an Advanced Processing Method for Carbon Steels [J].
Dolzhenko, Anastasiya ;
Kaibyshev, Rustam ;
Belyakov, Andrey .
METALS, 2020, 10 (12) :1-20
[6]  
Dudko V., 2022, METALS-BASEL, V12, DOI [10.3390/met12122177, DOI 10.3390/MET12122177]
[7]   Evolution of Lath Substructure and Internal Stresses in a 9% Cr Steel during Creep [J].
Dudko, Valeriy ;
Belyakov, Andrey ;
Kaibyshev, Rustam .
ISIJ INTERNATIONAL, 2017, 57 (03) :540-549
[8]   Work-hardening of ferrite and micro structure-based modelling of its mechanical behaviour under tension [J].
Gutierrez, I. ;
Altuna, M. A. .
ACTA MATERIALIA, 2008, 56 (17) :4682-4690
[9]   THE DEFORMATION AND AGEING OF MILD STEEL .3. DISCUSSION OF RESULTS [J].
HALL, EO .
PROCEEDINGS OF THE PHYSICAL SOCIETY OF LONDON SECTION B, 1951, 64 (381) :747-753
[10]   Microstructure and Strengthening Mechanisms in an Ultrafine Grained Al-Mg-Sc Alloy Produced by Powder Metallurgy [J].
Harrell, Tammy J. ;
Topping, Troy D. ;
Wen, Haiming ;
Hu, Tao ;
Schoenung, Julie M. ;
Lavernia, Enrique J. .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2014, 45A (13) :6329-6343