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在热模拟实验机上模拟了连续退火过时效工艺,研究了过时效温度和过时效时间对0.08C-0.15Si-1.50Mn钢组织和性能的影响.结果表明:过时效温度为350~550℃,保温时间1~20 min时,实验钢组织均由铁素体及分布在铁素体晶粒间的贝氏体组成;实验钢抗拉强度与贝氏体中M-A岛含量和M-A岛中的碳含量有关;随过时效温度升高,M-A岛含量出现"峰值",随过时效时间延长,M-A岛中的碳含量也出现"峰值".

参考文献

[1] Betram Ehrhardt;Thomas Gerber;Thomas Wilhelm Schaumann.Approaches to Microstructural Design of TRIP and TRIP Aided Cold Rolled High Strength Steels[A].CO,United States:AISTECH,2004:39.
[2] 党淑娥 .双相钢的研究现状及应用前景[J].金属材料研究,2002,28(03):9.
[3] Jean-Marc Raick;Peter Wendt .Innovative heat treatment solutions for steel strip[J].Metallurgical Plant and Technology International,2004(1):30-32.
[4] Mark A;Boyd D;Essadiqi E.The Effects of Microstrncture on Stabilitv of Retained Austenite in Multiphase Steels[A].CO,United States,AISTECH,2004:307.
[5] Tatsuua Nalagaito;Tetsuo Shimizu;Toru Inazumi.The Effect of Microstrncture on the Formation of Retained Austenite in TRIP-Aided Steel[A].CO,United States:AISTECH,2004:231.
[6] Takahiro Kashima;Yuri Tsukasa;Kou-ich sugimoto.The Effect of Initial Mierostructures Before Annealing on Duetility of TRIP-Aided Steel Sheets with Annealed Matrix[A].CO,United States:AISTECH,2004:315.
[7] K. SUGIMOTO;B. Yu;Y. MUKAI .Microstructure and formability of aluminum bearing TRIP-aided steels with annealed martensite matrix[J].ISIJ International,2005(8):1194-1200.
[8] Kou-ich SUGIMOTO;Kiyotaka NAKANO;Sung-Moo SONG .Retained Austenite Characteristics and StretchFlangeability of High-Strength Low-Alloy TRlP Type Bainitic Sheet Steels[J].ISIJ International,2002,42(04):450.
[9] Sugimoto K;Tsunezawa M;Hojo T;Ikeda S .Ductility of 0.1-0.6C-1.5Si-1.5Mn ultra high-strength TRIP-aided sheet steels with bainitic ferrite matrix[J].ISIJ International,2004(9):1608-1614.
[10] 长坂明彦,杉本公一,小林光征.碳含量对TRIP型双相钢深冲性的影响[J].鞍钢技术,2002(06):65-70.
[11] Kou-ich SUGIMOTO;Akinobu KANDA;Ryo KIKUCHI et al.Ductility and Formability of Newly Developed High Strength Low Alloy TRIP-Aided Sheet Steels With Annealed Martensite[J].ISIJ International,2002,42(08):910.
[12] 朱晓东,王利,俞宁峰,季思凯,王聪.过时效和平整对冷轧双相钢板强度、塑性及烘烤硬化性的影响[J].钢铁研究学报,2003(06):47-50.
[13] 陈铭谟.贝氏体的转变机制和高强度贝氏体钢设计[M].北京:国防工业出版社,1989
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