欢迎登录材料期刊网

材料期刊网

高级检索

The static recrystallization kinetics of low-carbon steel cast strip was investigated by means of interrupted hot tensile tests. As-cast strip was reheated and soaked and its austenite grain size was similar to the width level ofthe as-cast columnar structure. The tests were carried out on Gleeble-3500 thermomechanical simulator. The deformation temperature is in the range of 800 to 1200 ℃ with strain rate of 0. 01 to 1 s 1. The prestrain is fixed at 0. 04 to 0. 12, and the inter-hit delay time varies from 1 to 3 000 s. Effect of deformation conditions and initial microstructure on static recrystallization behavior was investigated. The activation energy (Qsrx) and Avrami exponent (n)of static recrystallization were determined to have 241 kJ/mol and 0. 54 respectively by linear regression of the experimental results. A kinetics model was proposed to describe the static recrystallization kinetics in low-carbon steel cast strip. The predicted softening fractions are in good agreement with the experimental results, indicating that the proposed equations can give an accurate estimate of thc softcning behaviors for the low-carbon steel cast strip.

参考文献

[1] Ferry M.Direct Strip Casting of Metals and Alloys[M].Cambridge:Woodhead Pub,2006
[2] Tsukatani I;Yakushiji T;Katsumata M .Deep Draw Ability of Low Carbon Cold Rolled Steel Sheets Produced From RapidlySolidified Plates[J].ISIJ International,1988,28:28.
[3] Watanable T .Overview of Near-Net Shape Continuous Casting for Steel Sheet[J].Tetsu To Hagane-Journal of the Iron and Steel Institute of Japan,2002,88:107.
[4] Wechsler R;Scand .The Status of Twin-Roll Casting Technology[J].Journal of Metallurgy,2003,32:58.
[5] Killmore C R;Creely H;Philips A et al.Development of Ultrathin Cast Strip Products by the Castrip Process[J].Iron Steel Research,2007,4:90.
[6] Mukunthan K;Strezov L;Mahapatra R et al.Evolution of Microstructures and Product Opportunities in Low Carbon Steel Strip[J].Canadian Metallurgical Quartery,2001,40:523.
[7] Ferry M;Page C .Microstructural Control by Secondary Processing of Strip Cast Low Carbon Steel[J].Materials Science and Technology,2001,17:1369.
[8] P(o)tschke S;Büchner A R .Influence of In-Line Hot Rolling on Twin Cast LC Steel[J].Stahl Und Eisen,2005,125:51.
[9] Nishioka S;Tsuchida Y;Kitagawa T et al.Research on Twin Roll Casting Process[J].Transactions of the Iron and Steel Institute of Japan,1986,26:B147.
[10] Inagaki J;Takada Y;Nakaoka K et al.Microstructural Changes of Steels Induced by Rapid Solidification and Their Application[J].Transactions of the Iron and Steel Institute of Japan,1986,26:B143.
[11] Shiang L T;Wray P J .Microstructures of Strip Cast Low Carbon Steels and Their Response to Thermal Processing[J].Metallurgical and Materials Transactions,1989,20A:1191.
[12] Yoshinao K;Satoshi I;Koji N et al.Evolution of Columnar γ Grain in Low Carbon Steel and Its Refinement by Additional Elements in Thin Slab[J].ISIJ International,2008,48:344.
[13] M. FERRY;M. THOMPSON;P. A. MANOHAR .Decomposition of Coarse Grained Austenite During Accelerated Cooling of C-Mn Steels[J].ISIJ International,2002(1):86-93.
[14] GAO Hai-yan;XIE Zhi-xiong;YU Yan et al.Dynamic Recrystallization Behavior of Twin Roll Cast Low Carbon Steel Strip[J].ISIJ International,2009,49:546.
[15] Devadas C;Samarasekera I V;Hawbolt E B .The Thermal and Metallurgical State of Steel Strip During Hot Rolling:Part 3 Microstructural Evolution[J].Metallurgical and Materials Transactions,1991,22A:339.
[16] Sellars C M.Hot Working and Forming Process[M].London:Metal Society,1980
[17] Senuma T;Yada H.Microstructure Evolution of Plain Carbon Steels[A].Roskilde:Riso Natl Lab,1986:547.
[18] Hondgson P D;Gibbs R K.Mathematical Modeling of Hot Rolling of Steel[M].Hamilton:Metallrigical Society of CIM,1990
[19] Kwon O .A Technology for the Prediction and Control of Microstructural Changes and Mechanical Properties in Steel[J].ISIJ International,1992,32:350.
[20] Elwazri A M;Essadiqi E;Yue S .The Kinetics of Static Recrystallization in Microalloyed Hypereutectoid Steels[J].ISIJ International,2004,44:162.
[21] Barnett M R;Jonas J J;Hodgson P D.Grain Size After Warm Working and Recrystallization of a Low Carbon Steel[A].Indianapolis:ISS,1996:971.
[22] Garcia-Mateo C;L6pez B;Rodriguez-Ibabe J M .Static Recrystallization Kinetics in Warm Worked Vanadium Microalloyed Steels[J].Materials Science and Engineering,2001,303A:216.
[23] Liu Zhen-yu;Lin Z .Segregation in Twin Roll Strip Cast Steels and the Effect on Mechanical Properties[J].ISIJ International,2007,47:254.
[24] Liu Zhong-zhu;Kobayashi Y;Nagai K .Effect of Phosphorus on Sulfide Precipitation in Strip Casting Low Carbon Steel[J].Materials Transactions,2005,46:26.
[25] Manoha P A;Ferry M;Chandra T .Five Decades of the Zener Equation[J].ISIJ International,1998,38:913.
[26] Lin YC;Chen MS;Zhong J .Study of static recrystallization kinetics in a low alloy steel[J].Computational Materials Science,2008(2):316-321.
[27] Li G;Maccagno T M;Bai D Q et al.Effect of Initial Grain Size on the Static Recrystallization Kenetics of Nb Microalloyed Steels[J].ISIJ International,1996,36:1479.
[28] Medinal SF;Mancilla J E .Static Recrystallization Modeling of Hot Deformed Steels Containing Several Alloying Elements[J].ISIJ International,1996,36:1077.
[29] Akben M G;Bacroix B;Jonas J J .Effect of Vanadium and Molybdenum Addition on High Temperature Recovery,Recrystallization and Precipitation Behavior of Niobium Microalloyed Steels[J].Acta Metallurgy,1983,31:161.
[30] Sellars C M .Modelling Microstructural Development During Hot Rolling[J].Materials Science and Technology,1990,6:1072.
[31] Medina S F;Fabregue P .Activation Energy in the Static Recrystallization of Austenite[J].Journal of Materials Science,1991,26:5427.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%