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终冷温度对Ti微合金化汽车大梁用钢组织和性能的影响

韩楚菲 董毅 时晓光 孙成钱 王俊雄 徐海健

韩楚菲, 董毅, 时晓光, 孙成钱, 王俊雄, 徐海健. 终冷温度对Ti微合金化汽车大梁用钢组织和性能的影响[J]. 钢铁钒钛, 2024, 45(5): 173-176, 204. doi: 10.7513/j.issn.1004-7638.2024.05.023
引用本文: 韩楚菲, 董毅, 时晓光, 孙成钱, 王俊雄, 徐海健. 终冷温度对Ti微合金化汽车大梁用钢组织和性能的影响[J]. 钢铁钒钛, 2024, 45(5): 173-176, 204. doi: 10.7513/j.issn.1004-7638.2024.05.023
Han Chufei, Dong Yi, Shi Xiaoguang, Sun Chengqian, Wang Junxiong, Xu Haijian. Influence of final cooling temperature on the microstructure and mechanical properties of Ti microalloyed automobile beam steel[J]. IRON STEEL VANADIUM TITANIUM, 2024, 45(5): 173-176, 204. doi: 10.7513/j.issn.1004-7638.2024.05.023
Citation: Han Chufei, Dong Yi, Shi Xiaoguang, Sun Chengqian, Wang Junxiong, Xu Haijian. Influence of final cooling temperature on the microstructure and mechanical properties of Ti microalloyed automobile beam steel[J]. IRON STEEL VANADIUM TITANIUM, 2024, 45(5): 173-176, 204. doi: 10.7513/j.issn.1004-7638.2024.05.023

终冷温度对Ti微合金化汽车大梁用钢组织和性能的影响

doi: 10.7513/j.issn.1004-7638.2024.05.023
详细信息
    作者简介:

    韩楚菲,1991年出生, 女,硕士研究生,工程师,主要从事先进钢铁结构材料的研究, E-mail:chufeihan2021@163.com

    通讯作者:

    徐海健,1987年出生, 男,博士研究生,高级工程师,主要从事先进钢铁结构材料的研究;E-mail: haijianxu2013@163.com

  • 中图分类号: TF76, TG156.1

Influence of final cooling temperature on the microstructure and mechanical properties of Ti microalloyed automobile beam steel

  • 摘要: 对成分为0.11C-1.20Mn-0.055Ti的510L汽车大梁钢进行热轧及层流冷却试验,研究了不同终冷温度(650、610 ℃和570 ℃)对其组织和力学性能的影响。试验结果表明:随着终冷温度的降低,钢的强度显著降低,伸长率增加;组织中等轴状铁素体含量逐渐减少,珠光体含量逐渐增加,晶粒逐渐细化。透射分析结果表明,Ti微合金化的510L汽车大梁钢组织中,析出相为立方结构的TiC相,终冷温度降低导致弥散细小TiC析出相的数量降低,终冷温度对Ti微合金化汽车大梁钢强度的影响是细晶强化和析出强化共同作用的结果。在其它工艺参数不变的情况下,为了保证钢板强韧性指标满足要求,应将钢板的终冷温度保持在650 ℃。
  • 图  1  不同终冷温度下510L汽车大梁钢组织形貌

    Figure  1.  Microstructure of the automobile 510L beam steel at different coiling temperatures

    (a) 650 ℃; (b) 610 ℃; (c) 570 ℃

    图  2  不同终冷温度下510L汽车大梁钢纳米析出相形貌

    Figure  2.  Morphologies of precipitates of the automobile 510L beam steel at different cooling temperatures

    (a) 650 ℃; (b) 610 ℃; (c) 570 ℃

    图  3  MnS析出相的TEM分析

    (a) 高分辨晶格像; (b) 高分辨的傅里叶变换; (c) FFT过滤的高分辨晶格像

    Figure  3.  TEM analysis of MnS precipitates

    图  4  TiC析出相的TEM分析

    (a) 高分辨晶格像; (b) 高分辨的傅里叶变换; (c) FFT过滤的高分辨晶格像

    Figure  4.  TEM analysis of TiC precipitates

    图  5  不同终冷温度下510L汽车大梁钢相图

    Figure  5.  Phases diagram of automobile 510L beam steel at different cooling temperatures

    图  6  不同终冷温度下510L汽车大梁钢力学性能

    Figure  6.  Mechanical properties of the automobile 510L beam steel at different cooling temperatures

    (a) 650 ℃; (b) 610 ℃; (c) 570 ℃

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    Wu Gang, Shi Zhiyong. Research and development applications of product series for automobile frame plate in BX steel[J]. Bengang Technology, 2006(2): 15-19.
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    Chen Qiyuan, Liu Zhenyu, Zhou Xiaoguang, et al. Current situation and development of hot-rolled automotive frame steel[J]. Steel Rolling, 2016, 33(2): 51-55.
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    Wang Xin, Kang Yonglin, Yu Hao, et al. Analysis on the microstructure and mechanical properties of low C-Mn 510L beam plate produced by FTSR technology[J]. Automobile Technology & Material, 2006(2): 6-8. doi: 10.3969/j.issn.1003-8817.2006.02.002
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    Wan Lanfeng, Leng Xianggui. Development of hot strip BM510L microalloyed with Nb and Ti for automobile frame[J]. Automobile Technology & Material, 2005(4): 12-15. doi: 10.3969/j.issn.1003-8817.2005.04.004
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    Zhang Jikui, Xin Ying, Zhang Manman, et al. Property and development of high strength low alloy hot rolled steel sheet for truck frame use[J]. Automobile Technology & Material, 2004(6): 42-46. doi: 10.3969/j.issn.1003-8817.2004.06.008
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出版历程
  • 收稿日期:  2023-08-05
  • 网络出版日期:  2024-10-30
  • 刊出日期:  2024-10-30

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