金属热处理 ›› 2025, Vol. 50 ›› Issue (6): 235-241.DOI: 10.13251/j.issn.0254-6051.2025.06.036

• 工艺研究 • 上一篇    下一篇

连续退火工艺对高塑性冷轧DH780钢组织与性能的影响

刘乐天1, 董伊康1, 路洪洲2, 薛仁杰1, 王学慧1, 王卓1, 张子悦1, 王立辉1   

  1. 1.河北河钢材料技术研究院有限公司, 河北 石家庄 050023;
    2.中信金属股份有限公司, 北京 100004
  • 收稿日期:2024-12-09 修回日期:2025-03-18 出版日期:2025-06-25 发布日期:2025-07-08
  • 通讯作者: 董伊康,高级工程师,硕士,E-mail: dongyikang@hbisco.com
  • 作者简介:刘乐天(1996—),男,助理工程师,硕士,主要研究方向为汽车用钢的开发及研究,E-mail: liuletian@hbisco.com。
  • 基金资助:
    中信铌钢发展奖励基金(2023FWNB-30122);河北省创新能力提升计划(23561006D);石家庄市驻冀高校产学研合作项目(241080457A)

Effect of continuous annealing process on microstructure and properties of high plasticity cold-rolled DH780 steel

Liu Letian1, Dong Yikang1, Lu Hongzhou2, Xue Renjie1, Wang Xuehui1, Wang Zhuo1, Zhang Ziyue1, Wang Lihui1   

  1. 1. Hebei HBlS Material Technology Research Institute Co., Ltd., Shijiazhuang Hebei 050023, China;
    2. CITIC Metal Co., Ltd., Beijing 100004, China
  • Received:2024-12-09 Revised:2025-03-18 Online:2025-06-25 Published:2025-07-08

摘要: 利用连续退火模拟试验机对DH780钢的退火温度、缓冷温度进行了模拟,采用OM、SEM、EBSD、XRD及拉伸试验定量研究了退火工艺对DH780钢微观组织与力学性能的影响。结果表明,随着退火温度由770 ℃提高至830 ℃,组织中铁素体含量由53.6%减少至43.6%,马氏体含量由42.6%增加至51.8%。屈服强度随退火温度的升高先降低后增大,而抗拉强度持续增大。随着缓冷温度由720 ℃降低至680 ℃,缓冷过程中过冷奥氏体析出的二次铁素体增多,最终组织中铁素体含量由45.9%增加50.1%,而奥氏体含量的减少造成最终马氏体体积分数降低,导致试验钢抗拉强度由829.2 MPa降低至785.8 MPa。当退火温度为800 ℃时,700 ℃ 缓冷温度的连续退火工艺下残留奥氏体含量达到最高,为7.2%,试验钢综合力学性能也最佳,强塑积达到22.1 GPa·%。

关键词: 连续退火工艺, DH780钢, 力学性能, 显微组织

Abstract: Annealing temperature and slow cooling temperature of DH780 steel were simulated by using a continuous annealing simulation experimental machine. The effect of annealing process on the microstructure and mechanical properties of DH780 steel was quantitatively studied by using OM, SEM, EBSD, XRD and tensile experiments. The results show that as the annealing temperature increases from 770 ℃ to 830 ℃, the ferrite content in the microstructure decreases from 53.6% to 43.6%, and the martensite content increases from 42.6% to 51.8%. The yield strength decreases and then increases with the increase of annealing temperature, while the tensile strength continues to increase. As the slow cooling temperature decreases from 720 ℃ to 680 ℃, the amount of secondary ferrite precipitated from undercooled austenite during the slow cooling process increases, and the ferrite content in the final structure increases from 45.9% to 50.1%, while the decrease in austenite content leads to a decrease in the final volume fraction of martensite. The tensile strength of the tested steel decreases from 829.2 MPa to 785.8 MPa. Under the continuous annealing process at an annealing temperature of 800 ℃ and a slow cooling temperature of 700 ℃, the retained austenite content reaches a maximum of 7.2%, and the comprehensive mechanical properties of the tested steel are also the best, with product of strength and elongation of 22.1 GPa·%.

Key words: continuous annealing process, DH780 steel, mechanical properties, microstructure

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