Influence of chemistry and runout table parameters on hot coil collapse in C-Mn steels

被引:2
|
作者
Banks, K. [2 ]
Tuling, A. [2 ]
Mintz, B. [1 ]
机构
[1] City Univ London, London EC1V 0HB, England
[2] Univ Pretoria, IMMRI, ZA-0002 Pretoria, South Africa
关键词
Hot coil collapse; C-Mn steels; Transformation; Ar-1;
D O I
10.1179/1743281210Y.0000000002
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The key metallurgical parameters affecting the incidence of coil collapse (soft slump) of C-Mn steels has been investigated using industrial data and laboratory simulation. Runout table (ROT) cooling/coiling simulations were performed on a Gleeble 1500D to study transformation before and during coiling of thin strip. For low C (< 0.07%) grades, coiling temperatures above 650 degrees C coupled with high nitrogen contents decreased the transformation end temperature Ar-1 and increased collapse. Coiling temperatures above the Ar-1 for ROT cooling increased both dilation and the time to complete transformation during coiling. These effects correlated with industrial conditions where a high frequency of coil collapse was observed.
引用
收藏
页码:204 / 210
页数:7
相关论文
共 50 条
  • [31] Influence of Process Parameters in the TMAZ Microstructural Evolution of C-Mn Steels Friction Hydro-Pillar Welded Joints
    Unfried S., J.
    Hermenegildo, T. F.
    Ramirez, A. J.
    Paes, M. T. P.
    Pope, A.
    TRENDS IN WELDING RESEARCH, 2009, : 381 - +
  • [32] Effects of run-out table cooling profile on the mechanical properties of C-Mn and C-Mn-Nb-V steels
    Lin, MF
    Hansen, SS
    37TH MECHANICAL WORKING AND STEEL PROCESSING CONFERENCE PROCEEDINGS, 1996, 33 : 79 - 88
  • [33] Computer Simulating Calculation on the Microstructure Evolutions during Hot Strip Rolling of C-Mn Steels
    Zhenyu LIU
    Guodong WANG and Qiaing ZHANG(Northeastern University
    Journal of Materials Science & Technology, 1994, (03) : 221 - 224
  • [34] Hot ductility of C-Mn and microalloyed steels evaluated for thin slab continuous casting process
    Giri, S. K.
    Chanda, T.
    Chatterjee, S.
    Kumar, A.
    MATERIALS SCIENCE AND TECHNOLOGY, 2014, 30 (03) : 268 - 276
  • [35] Simulation of hot-band microstructure of C-Mn steels during high speed cooling
    Thompson, M
    Ferry, M
    Manohar, RA
    ISIJ INTERNATIONAL, 2001, 41 (08) : 891 - 899
  • [36] Computer simulating calculation on the microstructure evolutions during hot strip rolling of C-Mn steels
    Liu, Zhenyu
    Wang, Guodong
    Zhang, Qiang
    Journal of Materials Science and Technology, 1994, 10 (03): : 221 - 224
  • [37] Prediction of the Mechanical Properties of Hot-rolled C-Mn Steels by Single Index Model
    Weng, Yang
    Zhao, Yonghong
    Tang, Guangbo
    Liu, Zhengdong
    PROCEEDINGS OF THE 2013 8TH INTERNATIONAL CONFERENCE ON COMPUTER SCIENCE & EDUCATION (ICCSE 2013), 2013, : 275 - 280
  • [38] Evaluation of transformation latent heat in C-Mn steels
    Lee, JL
    Chen, JK
    Pan, YT
    Hsieh, KC
    ISIJ INTERNATIONAL, 1999, 39 (03) : 281 - 287
  • [39] High strength C-Mn steels for automotive applications
    Evans, PJ
    Crawford, LK
    Jones, A
    IRONMAKING & STEELMAKING, 1997, 24 (05) : 361 - 367
  • [40] Influence of material anisotropy on fatigue crack growth in C-Mn steels of existing structures
    Slot, Henk
    Nicoreac, Monica
    Maljaars, Johan
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2020, 43 (11) : 2527 - 2541