Structure formation in high-strength nitrogen-bearing steel on hot deformation

被引:2
|
作者
Fomina O.V. [1 ]
机构
[1] NRC “Kurchatov Institute”—CRISM “Prometey”, St. Petersburg
来源
Fomina, O.V. (oknir@crism.ru) | 1600年 / Allerton Press Incorporation卷 / 47期
关键词
dynamic recrystallization; hot deformation; nitrogen-bearing steel; static recrystallization; threshold strain;
D O I
10.3103/S0967091217030056
中图分类号
学科分类号
摘要
The resistance to deformation of nitrogen-bearing Cr–Ni–Mn steel at 800–1200°C is investigated by means of the Gleeble 3800 system. By analysis of the deformation diagrams—in particular, determination of the threshold strain for dynamic recrystallization—the temperature and strain corresponding to the onset of dynamic recrystallization are established as a function of the strain rate, and optimal temperatures for hot stamping, forging, and rolling are recommended for industrial conditions. With true strain e = 0.9, the dynamic recrystallization in the steel at strain rates of 10–2–2 s–1 occurs at temperatures no lower than 900°C. Metallographic data confirm the experimental results and show that the structure formation in the steel on isothermal deformation at different rates is different above 900°C. With increase in temperature and decrease in strain rate, relaxation processes are more developed. At a strain rate of 0.01 s–1 (stamping on a press), dynamic recrystallization begins at around e = 0.1 (relative reduction around 10%) in the range 1100–1200°C. Strain of around 20 and 30%, respectively, is required with decrease in temperature to 1000 and 900°C. With increase in strain rate to 0.1 s–1 (forging), dynamic recrystallization begins with around 20% strain above 1100°C, 28% at 1000, and 35% at 900°C. At a strain rate of 1–2 s–1 (rolling), dynamic recrystallization begins at around 30% strain in the range 1000–1100°C. In that case, the threshold strain is 36% at both 900 and 1200°C. © 2017, Allerton Press, Inc.
引用
收藏
页码:172 / 177
页数:5
相关论文
共 50 条
  • [21] Hot Deformation and Corrosion Resistance of High-Strength Low-Alloy Steel
    Kingkam, Wilasinee
    Zhao, Cheng-Zhi
    Li, Hong
    Zhang, He-Xin
    Li, Zhi-Ming
    ACTA METALLURGICA SINICA-ENGLISH LETTERS, 2019, 32 (04) : 495 - 505
  • [22] Hot Deformation and Corrosion Resistance of High-Strength Low-Alloy Steel
    Wilasinee Kingkam
    Cheng-Zhi Zhao
    Hong Li
    He-Xin Zhang
    Zhi-Ming Li
    Acta Metallurgica Sinica (English Letters), 2019, 32 : 495 - 505
  • [23] Study of High-Strength Austenitic Nitrogen-Containing Steel Ingot Phase Formation and Structure
    Fomina, O. V.
    Vikhareva, T. V.
    Kalinin, G. Yu.
    Gribanova, V. B.
    METALLURGIST, 2018, 62 (5-6) : 501 - 510
  • [24] Study of High-Strength Austenitic Nitrogen-Containing Steel Ingot Phase Formation and Structure
    O. V. Fomina
    T. V. Vikhareva
    G. Yu. Kalinin
    V. B. Gribanova
    Metallurgist, 2018, 62 : 501 - 510
  • [25] New nitrogen-bearing austenitic stainless steels with high strength and ductility
    M. O. Speidel
    Metal Science and Heat Treatment, 2005, 47 : 489 - 493
  • [26] New nitrogen-bearing austenitic stainless steels with high strength and ductility
    Speidel, M. O.
    METAL SCIENCE AND HEAT TREATMENT, 2005, 47 (11-12) : 489 - 493
  • [27] MELTING NITROGEN-BEARING HIGH-SPEED STEEL USING HIGH-NITROGEN FERROVANADIUM
    PETROV, AK
    KUTUEV, IK
    KHITRIK, AI
    PARKHOMENKO, GP
    GRISHCHENKO, SG
    STEEL IN THE USSR, 1979, 9 (07): : 341 - 343
  • [28] ROLLING-CONTACT DEFORMATION, ETCHING EFFECTS, AND FAILURE OF HIGH-STRENGTH BEARING STEEL
    BHARGAVA, V
    HAHN, GT
    RUBIN, CA
    METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1990, 21 (07): : 1921 - 1931
  • [29] Microstructure evolution and constitutive modeling of Cu-bearing high-strength low-alloy steel during hot deformation
    Kan, Liye
    Ye, Qibin
    Zhang, Shiwei
    Wang, Zhaodong
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2024, 33 : 212 - 222
  • [30] Characterization and Modeling of Hot Deformation Behavior of a Copper-Bearing High-Strength Low-Carbon Steel Microalloyed with Nb
    M. T. Seiyedbeigi
    S. R. Hosseini
    A. Eshaghi
    Journal of Materials Engineering and Performance, 2019, 28 : 4324 - 4334