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
  • [21] ULTRA-RAPID ANNEALING OF LOW-CARBON STEEL
    ATKINSON, M
    MATERIALS FORUM, 1993, 17 (02): : 181 - 208
  • [22] ROLLING AND ANNEALING TEXTURES OF LOW-CARBON STEEL SHEETS
    TAKECHI, H
    KATO, H
    NAGASHIMA, S
    TRANSACTIONS OF THE METALLURGICAL SOCIETY OF AIME, 1968, 242 (01): : 56 - +
  • [23] PERFECTING ANNEALING SCHEDULE FOR LOW-CARBON ELECTRICAL STEEL
    SOKOL, IY
    GUTNOV, RB
    TUNKOV, VP
    STAL IN ENGLISH-USSR, 1970, (12): : 993 - &
  • [24] The Effect of Boron on the Impact Energy of Low-Carbon Steel Weld Metal at Low Temperatures
    Amirabadizade S.R.
    Shafinia S.
    Sabet H.
    Mirdamadi S.
    Ebrahimnezhad-Khaljiri H.
    Metallography, Microstructure, and Analysis, 2018, 7 (2) : 143 - 152
  • [25] Effect of Annealing on the Microstructure and Mechanical Properties of a Low-Carbon Steel with Ultrafine Grains
    Tian J.
    Xu G.
    Liang W.
    Yuan Q.
    Xu, Guang (xuguang@wust.edu.cn), 1600, Springer Science and Business Media, LLC (06): : 233 - 239
  • [26] EFFECT OF COLD-WORKING AND ANNEALING ON THE STRUCTURE OF A DECARBURIZED LOW-CARBON STEEL
    MOVCHAN, VI
    GRUDEVA, NA
    RUSSIAN METALLURGY, 1983, (04): : 70 - 73
  • [27] INFLUENCE OF MORPHOLOGY AND DISTRIBUTION OF FERRITES ON THE FRACTURE BEHAVIOR OF LOW-CARBON STEEL AT LOW TEMPERATURES.
    Huang, Zheng
    Yao, Mei
    Fan, Yinglong
    Han, Yuanlong
    Li, Chunzhi
    Jinshu Xuebao/Acta Metallurgica Sinica, 1987, 23 (03):
  • [28] CREEP OF A LOW-CARBON STEEL AT LOW STRESSES AND INTERMEDIATE TEMPERATURES
    MISHRA, RS
    JONES, H
    GREENWOOD, GW
    ACTA METALLURGICA ET MATERIALIA, 1990, 38 (03): : 461 - 468
  • [29] Brittle Failure of Low-Carbon Steel Structures at Low Temperatures
    Kabaldin Y.G.
    Anosov M.S.
    Zhelonkin M.V.
    Golovin A.A.
    Russian Engineering Research, 2017, 37 (12) : 1062 - 1069
  • [30] Effect of Annealing Temperature and Coiling Temperature on r-value of Nb and B-added Extra Low-carbon Steel for Welded Cans
    Tada, Masaki
    Nakagawa, Yusuke
    Kojima, Katsumi
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 2016, 102 (11): : 638 - 645