首页> 外文会议>International Conference on Advanced Design and Manufacturing Engineering >Influence of nitrogen content on the microstructure and precipitate of the medium-carbon vanadium microalloyed steel
【24h】

Influence of nitrogen content on the microstructure and precipitate of the medium-carbon vanadium microalloyed steel

机译:氮含量对中碳钒微合金化钢微观结构和沉淀的影响

获取原文

摘要

The microstructure and precipitate of the two kinds of medium-carbon vanadium microalloyed steels whose nitrogen contents were 0.0035% and 0.012% respectively, were studied by image analysis and transmission electron microscope (TEM). The results show there are the large amount of 10~20nm dispersion distribution irregular flake VC precipitates within the ferrite, the part of clustered fibrous VC precipitates with the diameter of 4-13nm that grow toward to ferrite intracrystalline along the grain boundary with some angle in the local area, and only a very small amount of 20 - 50nm spherical particles V (C, N) in the low-nitrogen steel. However, in the high-nitrogen steel, the precipitates are divided into two stages: the first stage is the part of 30~80nm spherical particles V(C, N) which precipitation in austenite, the second stage is flakiness VC which precipitation in ferrite during the following γ —> α phase transformation and cooling process. Compared with the low-nitrogen steel, the number of precipitates in decreased significantly and the size increased obviously in the high-nitrogen steel. The substantial increase of nitrogen content leads to the rapid increase of driving force that V (C, N) precipitation in austenite. A lot of V (C, N) that precipitation before phase transformation results in the significant increase of ferrite nucleation rate, which leads to the microstructure of high-nitrogen steel fined obviously.
机译:通过图像分析和透射电子显微镜(TEM)研究氮含量为0.0035%和0.012%的两种中碳钒微合金钢的微观结构和沉淀。结果表明,在铁氧体内沉淀出的10〜20nm分散分布不规则的薄片Vc沉淀,簇生纤维化Vc的一部分沉淀到直径为4-13nm,沿着晶界朝向铁氧体胆结构中的一定角度局部区域,并且在低氮钢中仅具有非常少量的20 - 50nm球形颗粒V(C,N)。但是,在高氮钢中,沉淀物分为两个阶段:第一阶段是奥氏体中沉淀的30〜80nm球形颗粒V(C,N)的部分,第二阶段是铁素体中沉淀的溶解Vc在下面的γ - >α相变和冷却过程中。与低氮钢相比,高氮钢中,沉淀物的数量显着下降,大小明显增加。氮含量的大幅增加导致奥氏体中v(c,n)沉淀的驱动力的快速增加。在相变前的大量v(c,n)导致铁氧体成核速率的显着增加,这导致高氮钢的微观结构明显地致以明显的。

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