Effect of coiling and annealing temperatures on yield point behavior of low-carbon steel

被引:0
|
作者
Zhi-ming Li
Xiang Li
Lei Yang
Zheng-yan Shen
Bi-lei Wang
Shun-li Zhao
Gao-fei Liang
Chang-jiang Song
机构
[1] Shanghai University,State Key Laboratory of Advanced Special Steel, School of Materials Science and Engineering
[2] Technology Center of Baoshan Iron & Steel Co.,undefined
[3] Ltd.,undefined
关键词
Low-carbon steel; Carbide; Yield point elongation; Coiling temperature; Annealing temperature;
D O I
暂无
中图分类号
学科分类号
摘要
Low-carbon steel is widely used for household appliance and automotive panel steel because of its excellent plasticity. Unfortunately, yield point phenomena easily appear in the low-carbon steel produced by a continuous annealing process and cause degradation to the surface quality during processing. The effect of the coiling temperature (600–750 °C) and annealing temperature (740–820 °C) on the yield point behavior is studied. Tensile tests show that coiling temperature has a greater effect on yield point elongation (YPE) and aging index (AI) than the annealing temperature. Microstructure observations show that coiling temperature at 750 °C would make the micron-sized carbides appearing at the grain boundary disappear and a number of dispersed nanoscale carbides precipitate in grain interior, corresponding to the highest solid solution carbon content in the matrix of 750 °C coiled sample. The experimental results suggest that AI rather than YPE has a positive relationship with the solid solution carbon content of the low-carbon steel. And YPE has a positive relationship with the upper/lower yield strength.
引用
收藏
页码:325 / 333
页数:8
相关论文
共 50 条
  • [41] SURFACE SEGREGATION OF MANGANESE IN LOW-CARBON STEEL DURING ANNEALING
    HUDSON, RM
    BIBER, HE
    OLES, EJ
    WARNING, CJ
    METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1976, 7 (12): : 1857 - 1865
  • [42] Improvement in the spheroidizing annealing of low-carbon steel for cold upsetting
    Yu. P. Gul’
    M. A. Sobolenko
    A. V. Ivchenko
    Steel in Translation, 2012, 42 (6) : 531 - 535
  • [43] Effect of Reheating Temperatures on Hot Ductility and Precipitation Behavior of Low-Carbon Steels
    Sadeghi, Fazlollah
    Zargar, Tahereh
    Lahino, Muhamad Rasyad Arkan
    Kim, Hyeju
    Kwon, Sang-Hum
    Heo, Yoon-Uk
    Lee, Jae Sang
    Yim, Chang Hee
    STEEL RESEARCH INTERNATIONAL, 2023, 94 (01)
  • [44] FORMATION AND ANNIHILATION OF ANNEALING TWINS IN THE AUSTENITE OF A LOW-CARBON STEEL
    INAGAKI, H
    ZEITSCHRIFT FUR METALLKUNDE, 1990, 81 (02): : 119 - 129
  • [45] DUCTILITY IMPROVEMENT OF A LOW-CARBON STEEL BY WARM ROLLING AND ANNEALING
    BOURELL, DL
    SHERBY, OD
    METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1981, 12 (01): : 140 - 142
  • [46] THE EFFECT OF MICROSTRUCTURE ON THE MECHANICAL-BEHAVIOR OF A LOW-CARBON, LOW-ALLOY STEEL
    YU, MT
    TOPPER, TH
    WANG, L
    INTERNATIONAL JOURNAL OF FATIGUE, 1988, 10 (04) : 249 - 255
  • [47] The velocity of ultrasound in low-carbon steel deformed at the low yield limit
    B. S. Semukhin
    L. B. Zuev
    K. I. Bushmeleva
    Journal of Applied Mechanics and Technical Physics, 2000, 41 (3) : 556 - 559
  • [48] Flow Stress Behavior and Governing Equation of Plastic Flow of Low-Carbon Steel at Elevated Temperatures
    Wang, Z. Y.
    Ma, M. X.
    Zhong, S.
    Zhang, S.
    Feng, J.
    Wu, H. L.
    Cao, Yu.
    METAL SCIENCE AND HEAT TREATMENT, 2023, 65 (5-6) : 363 - 369
  • [49] Flow Stress Behavior and Governing Equation of Plastic Flow of Low-Carbon Steel at Elevated Temperatures
    Z. Y. Wang
    M. X. Ma
    S. Zhong
    S. Zhang
    J. Feng
    H. L. Wu
    Yu. Cao
    Metal Science and Heat Treatment, 2023, 65 : 363 - 369
  • [50] Ultrasonic Velocity and Attenuation of Low-Carbon Steel at High Temperatures
    Tai, Jan Lean
    Sultan, Mohamed Thariq Hameed
    Lukaszewicz, Andrzej
    Shahar, Farah Syazwani
    Tarasiuk, Wojciech
    Napiorkowski, Jerzy
    MATERIALS, 2023, 16 (14)