Study of Low-Carbon Pipe Steel Strain Ageing

被引:0
作者
I. Yu. Pyshmintsev
M. A. Smirnov
O. V. Varnak
A. N. Mal’tseva
Yu. N. Goikhenberg
机构
[1] Russian Research Institute of the Pipe Industry (RosNITI),
[2] South-Ural State University,undefined
来源
Metallurgist | 2018年 / 61卷
关键词
low-carbon pipe steel; strain aging; ferrite; bainite; mechanical properties; austenitizing temperature; hot plastic deformation;
D O I
暂无
中图分类号
学科分类号
摘要
Strain aging of pipe steels 06G2FB and 07G2MFB with ferrite-pearlite and ferrite-bainite structures is investigated. It is established that a ferrite-bainite structure is more inclined towards strain aging than a ferrite-pearlite structure. The tendency towards strain aging of steel with a ferrite-bainite structure increases with increasing austenitizing temperature. During hot plastic deformation there is development of recrystallization and the tendency towards strain aging decreases.
引用
收藏
页码:1093 / 1101
页数:8
相关论文
共 50 条
  • [21] Effect of chemical composition and heat and strain treatment on austenite grain size in low-carbon steel
    Khlusova, E. I.
    Kruglova, A. A.
    Orlov, V. V.
    METAL SCIENCE AND HEAT TREATMENT, 2007, 49 (11-12) : 549 - 555
  • [22] Effect of chemical composition and heat and strain treatment on austenite grain size in low-carbon steel
    E. I. Khlusova
    A. A. Kruglova
    V. V. Orlov
    Metal Science and Heat Treatment, 2007, 49 : 549 - 555
  • [23] Crystallographic Features of Phase Transformations in High-Strength Low-Carbon Pipe Steel
    Lobanov, M. L.
    Satskii, D. D.
    Urtsev, N. V.
    Zorina, M. A.
    Yarkov, V. U.
    METAL SCIENCE AND HEAT TREATMENT, 2024, 66 (5-6) : 259 - 269
  • [24] A study on strain ageing during and after warm rolling of a carbon steel
    Serajzadeh, S.
    Akhgar, J. M.
    MATERIALS LETTERS, 2008, 62 (6-7) : 946 - 948
  • [25] Observation of the Martensitic-Austenitic Component in the Structure of Low-Carbon Low-Alloy Pipe Steel
    I. L. Yakovleva
    N. A. Tereshchenko
    N. V. Urtsev
    Physics of Metals and Metallography, 2020, 121 : 352 - 358
  • [26] Observation of the Martensitic-Austenitic Component in the Structure of Low-Carbon Low-Alloy Pipe Steel
    Yakovleva, I. L.
    Tereshchenko, N. A.
    Urtsev, N., V
    PHYSICS OF METALS AND METALLOGRAPHY, 2020, 121 (04) : 352 - 358
  • [27] Chemical composition and structure of low-carbon low-alloy pipe steel following controlled rolling
    V. M. Schastlivtsev
    I. L. Yakovleva
    N. A. Tereshchenko
    V. V. Kurban
    V. L. Kornilov
    V. M. Salganik
    A. M. Lesin
    Metal Science and Heat Treatment, 2008, 50 : 207 - 213
  • [28] An investigation into the effect of strain ageing on mechanical properties of low-carbon steels after warm rolling
    Serajzadeh, Siamak
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2009, 40 (7-8) : 721 - 728
  • [29] Experimental investigation on low-carbon quenched and partitioned steel
    Pastore, E.
    De Negri, S.
    Fabbreschi, M.
    Ienco, M. G.
    Pinasco, M. R.
    Saccone, A.
    Valentini, R.
    METALLURGIA ITALIANA, 2011, (09): : 25 - 34
  • [30] An investigation into the effect of strain ageing on mechanical properties of low-carbon steels after warm rolling
    Siamak Serajzadeh
    The International Journal of Advanced Manufacturing Technology, 2009, 40 : 721 - 728