炼钢 ›› 2020, Vol. 36 ›› Issue (6): 72-77.

• 氧化物冶金 • 上一篇    下一篇

高温条件下Mg处理船体钢钉扎粒子的作用行为

田  博1,孙立根2,朱立光3   

  1. (1. 华北理工大学 以升创新教育基地,河北 唐山 063210;
    2. 华北理工大学 冶金与能源学院,河北 唐山 063210; 
    3. 河北科技大学,河北 石家庄 050018)

  • 出版日期:2020-12-05 发布日期:2020-12-04

The behavior of pinned particles for Mg treated shipbuilding steel under high temperature

  • Online:2020-12-05 Published:2020-12-04

摘要: Mg处理船体钢具有优秀的大线能量焊接性能,而钢中粒子稳定的钉扎作用是其防止晶粒粗化的关键。为确定高温条件下Mg处理DH36船体钢中钉扎粒子的作用行为,设计了高温共聚焦试验和焊接热模拟试验。结果表明,当温度低于1 170 ℃时,钢中起钉扎作用的粒子主要为小尺寸的Ti、Nb星型复合粒子和TiN粒子;当温度进一步升高、高温作用时间进一步延长时,Ti、Nb复合粒子固溶失效,导致奥氏体晶粒尺寸由5 μm粗化到50~60 μm,此时防止晶粒进一步粗化的钉扎粒子主要为Mg、Ti复合粒子,而复合粒子的稳定性则取决于钢中[Mg]含量。


关键词: 氧化物冶金, 船板钢, 钉扎粒子, Mg处理, 晶粒细化

Abstract: The shipbuilding steel with Mg treatment has excellent performance for large heat input welding, and the stable pinning effect of the particles is the key for the preventing of the grains coarsening. For conforming the behavior of pinned particles for Mg treated DH36 shipbuilding steel under high temperature, the high temperature confocal experiments and the welding thermal simulation experiments had been designed and performed. The results showed that, when the temperature was lower than 1 170 ℃,the pinned particles in steel were mainly the Ti & Nb composite particles like stars with small size and TiN particles. For higher temperature and longer high temperature duration, the Ti & Nb composite particles lost the pinning effect for solving in the steel, and the austinite grain size had grown from 5 μm to nearly 50~60 μm. The new steady pinned particles were mainly the Mg & Ti composite particles, and the stability was decided by the [Mg] content in the steel.


Key words: oxide metallurgy, shipbuilding steel, pinned particle, Mg treatment, grain refining