首页> 外文期刊>ISIJ international >Improvement of Anti-aging Property at Low Temperature by Cr Addition in Bake Hardenable Ultra Low Nitrogen Steels
【24h】

Improvement of Anti-aging Property at Low Temperature by Cr Addition in Bake Hardenable Ultra Low Nitrogen Steels

机译:烘烤硬化超低氮钢中添加铬改善低温下的抗老化性能

获取原文
           

摘要

The effect of Cr, Mn, Mo, V, Nb, and Al on bake hardenability (BH) at 170°C and anti-aging properties, i.e. the inhibition of the appearance of yield point elongation (YPE) after low temperature aging, in ultra low N steels was investigated. It was found that Cr addition of 0.5–1.0 mass% apparently inhibit the appearance of YPE after aging for 3.6 ks at 100°C without much decreasing the amount of 2%BH at 170°C. The reason for the inhibition by Cr addition was discussed on the diffusion trap model, by using the interactions among Cr atom, N atom, and vacancy evaluated by first-principles calculation. The estimation indicates that (1) Cr would not inhibit the diffusion of N atoms as a repulsive interaction was expected for Cr–N complexes, (2) a small amount of vacancies introduced by skinpass rolling, which attracts strongly with N atoms, seems to play a main role on the inhibition of the diffusion of N atoms, (3) Cr could retard the annihilation of vacancies which trap N atoms during aging, since Cr atom attractively interacts with vacancy–N complexes. Moreover, the effect of annealing temperature and coiling temperature on bake hardenability was investigated, and the effect was found to be understood by the change of solute N, owing to the precipitation of CrN which has a precipitation nose at 650–700°C.
机译:Cr,Mn,Mo,V,Nb和Al对170°C烘烤硬化性(BH)和抗老化性能的影响。研究了超低氮钢在低温时效后对屈服点伸长率(YPE)出现的抑制作用。研究发现,在100°C下老化3.6 ks后,添加0.5-1.0质量%的Cr明显抑制了YPE的出现,而在170°C下2%BH的含量没有太大降低。利用Cr原子,N原子之间的相互作用以及通过第一性原理计算得出的空位,在扩散阱模型上讨论了Cr添加抑制的原因。估计表明:(1)Cr不会抑制N原子的扩散,因为预期Cr-N络合物会产生排斥相互作用;(2)似乎是通过平整轧制引入的少量空位,强烈吸引了N原子。在抑制N原子的扩散中起主要作用。(3)Cr可以延迟衰老过程中捕获N原子的空位的the灭,因为Cr原子与空位-N络合物具有吸引力的相互作用。此外,还研究了退火温度和卷取温度对烘烤硬化性的影响,并且由于CrN的析出(在650-700°C时具有析出峰),可以通过溶质N的变化来理解其影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号