含Mo元素CL60钢CCT曲线的测定及分析Detection and analysis of CCT curve of CL60 steel with Mo element
孔昌昌,秦凤明,张晓峰,党淑娥,陈慧琴
摘要(Abstract):
在Gleeble-3800热模拟机上测定了含微量Mo元素CL60钢在不同冷却速度下连续冷却时的膨胀曲线,并采用金相-硬度法,测定了该钢的连续冷却转变曲线(CCT曲线),研究了冷却速度对其显微组织演变以及硬度的影响。结果表明:当冷却速度小于1℃/s时,实验钢的转变产物为先共析铁素体和珠光体组织;当冷却速度增加到2℃/s时,开始发生贝氏体转变;当冷却速度增加到5℃/s时,开始发生马氏体转变;冷却速度在5~10℃/s的范围内时,转变产物为少量铁素体、珠光体、贝氏体和马氏体所组成的混合组织;当冷却速度为15℃/s时,先共析铁素体消失;当冷却速度为20~40℃/s时,转变产物为珠光体和马氏体混合组织;当冷却速度大于50℃/s时,转变产物全部为马氏体组织。随着冷却速度的增大,实验钢的硬度逐渐增大。尽管Mo元素的加入能细化珠光体片间距,但加Mo元素CL60钢在生产过程中得到理想组织的条件更加苛刻。为避免贝氏体、马氏体等非理想组织出现,不同部位的冷却速度须严格控制在2℃/s以下。
关键词(KeyWords): CL60钢;膨胀法;金相-硬度法;CCT曲线
基金项目(Foundation): 山西省重点研发计划重点项目(201703D111005);; 山西省科技攻关计划(工业)项目(201603D121006-2)
作者(Author): 孔昌昌,秦凤明,张晓峰,党淑娥,陈慧琴
DOI: 10.13289/j.issn.1009-6264.2019-0096
参考文献(References):
- [1] 张斌,付秀琴.铁路车轮、轮箍踏面剥离的类型及形成机理[J].中国铁道科学,2001,22(2):73-78.ZHANG Bin,FU Xiu-qin.Type and formation mechanism of railway wheel and tire tread spall[J].China Academy of Railway Science,2001,22(2):73-78.
- [2] 崔银会,张建平,苏航,等.高速列车车轮材料研究的综述[J].安徽冶金科技职业学院学报,2005,15(2):9-12.CUI Yin-hui,ZHANG Jian-ping,SU Hang,et al.Summarize of wheel material research on high speed train[J].Journal of Anhui Vocational College of Metallurgy and Technology,2005,15(2):9-12.
- [3] 蔡钊.整体辗钢车轮传统热处理工艺分析与展望[J].轧钢,1990,15(6):44-45.CAI Zhao.Analysis and prospect of traditional heat treatment process of whole rolling steel whee[J].Steel Rolling,1990,15(6):44-45.
- [4] 孔君华,郑琳,郭斌,等.钼对低碳微合金钢组织和性能的影响[J].轧钢,2005,22(4):27-29.KONG Jun-hua,ZHENG Lin,GUO Bin,et al.Influence of Mo on microstructures and properties of low carbon microalloyed steels[J].Steel Rolling,2005,22(4):27-29.
- [5] 范跃华,樊新民,魏伟,等.高强度管线钢连续冷却转变研究[J].材料热处理学报,2008,29(3):62-65.FAN Yue-hua,FAN Xin-min,WEI Wei,et al.Study on continuous cooling transformation of high strength pipeline steel[J].Transactions of Materials and Heat Treatment,2008,29(3):62-65.
- [6] 王晓峰,李红英,张尚青,等.T24钢过冷奥氏体连续冷却转变研究[J].中南大学学报(自然科学版),2014,45(11):3769-3777.WANG Xiao-feng,LI Hong-ying,ZHANG Shang-qing,et al.Continuous cooling transformation of undercooling austenite about T24 steel[J].Journal of Central South University (Science and Technology),2014,45(11):3769-3777.
- [7] 李红英,李阳华,王晓峰,等.28CrMnMoV钢过冷奥氏体连续冷却转变[J].中南大学学报(自然科学版),2013,44(7):2702-2711.LI Hong-ying,LI Yang-hua,WANG Xiao-feng,et al.Continuous cooling transformation of undercooling austenite about 28CrMnMoV steel[J].Journal of Central South University (Science and Technology),2013,44(7):2702-2711.
- [8] 李红英,曾翠婷,魏冬冬,等.T23钢过冷奥氏体连续冷却转变曲线[J].材料热处理学报,2010,31(8):77-80.LI Hong-ying,ZENG Cui-ting,WEI Dong-dong,et al.Continuous cooling transformation curves of T23 steel[J].Transactions of Materials and Heat Treatment,2010,31(8):77-80.
- [9] 孙邦明.φ1098 mm车轮热处理工艺的研究[J].钢铁研究,2001,119(2):28-31.SUN Bang-ming.Study on heat treatment process for φ1098 mm wheel[J].Research on Iron and Steel,2001,119(2):28-31.
- [10] 吴斯,李秀程,尚成嘉,等.工艺因素和组织对高速动车车轮断裂韧性的影响[J].材料热处理学报,2012,33(7):100-105.WU Si,LI Xiu-cheng,SHANG Cheng-jia,et al.Effect of processing and microstructure on fracture toughness of medium carton steel for high-speed railroad wheel[J].Transactions of Materials and Heat Treatment,2012,33(7):100-105.
- [11] 李翼,杨忠民.V对高碳钢连续冷却时组织转变的影响[J].金属学报,2010,46(12):1501-1510.LI Yi,YANG Zhong-min.The effects of V on phase transformation of hign carbon steel during continuous cooling[J].Acta Metallurgica Sinica,2010,46(12):1501-1510.
- [12] Militzer M,Pandi R,Hawbolt E B.Ferrite nucleation and growth during continuous cooling[J].Metallurgical and Materials Transactions A,1996,27(6):1547-1556.
- [13] 刘虎,孔祥华,孙彦辉,等.弹簧钢55SiCrA过冷奥氏体动态连续冷却转变[J].材料热处理学报,2011,32(7):73-77.LIU Hu,KONG Xiang-hua,SUN yan-hui,et al.Dynamic continuous cooling transformation of supercooled austenite in spring steel 55SiCrA[J].Transactions of Materials and Heat Treatment,2011,32(7):73-77.
- [14] 李智丽,杨维宇,白雅琼,等.27SiMn钢奥氏体连续冷却转变曲线[J].热加工工艺,2011,40(22):45-47.LI Zhi-li,YANG Wei-yu,BAI Ya-qiong,et al.Continuous cooling transformation curve of subcooling austenite of 27SiMn steel[J].Hot Working Technology,2011,32(7):73-77.
- [15] 刘东升,王国栋.奥氏体变形对低碳Mn-B-Nb-Ti钢连续冷却相变的影响[J].金属学报,1999,35(8):816-822.LIU Dong-sheng,WANG Guo-dong.Effect of austenite deformation on continuous cooling transformation for a low carbon Mn-Nb-Ti steel[J].Acta Metallurgica Sinica,1999,35(8):816-822.
- [16] 吴良芹.连续冷却对60Si2Mn钢组织性能的影响[J].材料科学与工程学报,2014,32(5):712-715.WU Liang-qin.Influence of cooling on microstructure and performance of 60Si2Mn steel[J].Journal of Materials Science and Engineering,2014,32(5):712-715.
- [17] 赵宝纯,李桂艳,柳永浩,等.含Mo低碳微合金钢CCT曲线的测定与分析[J].热加工工艺,2008,37(22):37-39.ZHAO Bao-chun,LI Gui-yuan,LIU Yong-hao,et al.Delection and analysis of curve of low-carbon micro-alloyed steel with Mo[J].Hot Working Technology,2008,37(22):37-39.
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