...
首页> 外文期刊>Metallurgical Research & Technology >Effect of nitrogen on transformation behavior and intragranular ferrite formation in a V-Ti microalloyed steel for forging
【24h】

Effect of nitrogen on transformation behavior and intragranular ferrite formation in a V-Ti microalloyed steel for forging

机译:氮对V-TI微合金钢转化行为和腔内铁氧体形成进行锻造的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The transformation behavior and intragranular ferrite formation in V Ti microalloyed steel with a nitrogen content of 0.005 wt.% and 0.015 wt.% are studied by the DIL 805A dilatometer. The results show that increasing the nitrogen content has no significant effect on AC(1), AC(3) and M-S temperature. However, the continuous cooling transformation (CCT) diagrams are shifted to left side. The minimum cooling rates of bainitc and martensitic transformation are increased from 3 degrees C/s to 5 degrees C/s and from 5 degrees C/s to 10 degrees C/s, respectively. (Ti, V) (C, N) particles on MnS is the nuclei of intragranular ferrite, and (10 0) (Ti, V)(C, N) and ((1) over bar 0 (1) over bar)(alpha) are just misoriented by 6.7 degrees. With the increase of nitrogen content, the number of intragranular ferrite is increased from 73 to 170 per . mm(2). The volume fraction of intragranular ferrite is increased from 0.23%similar to 0.79% to 0.79% similar to 4.6% at cooling rate of 1 degrees C/s similar to 0.1 degrees C/s. According to the industrial production experiment, the toughness of forging crankshaft is improved by increasing the nitrogen content. It is benefit for achieving fair matching of high strength and high toughness of crankshaft.
机译:V TI微合金钢中的转化行为和鞘内铁氧体形成,氮含量为0.005重量%。%和0.015重量%。通过DIM 805A膨胀计研究%。结果表明,增加氮含量对AC(1),AC(3)和M-S温度没有显着影响。然而,连续冷却变换(CCT)图移到左侧。贝氏体和马氏体变换的最小冷却速率分别从3摄氏度增加到5摄氏度和5摄氏度至10度C / s。 MNS上的(Ti,V)(C,N)颗粒是腔内铁氧体的核,(10 0)(Ti,V)(C,N)和((1)上方的条(1))( alpha)恰好被6.7度的误导。随着氮含量的增加,腔内铁氧体的数量从73%增加到每次。 mm(2)。腔内铁素体的体积分数从0.23%增加到0.79%至0.79%,其冷却速率为0.1℃/ s的4.6%,类似于0.1℃/ s。根据工业生产实验,通过增加氮含量来提高锻造曲轴的韧性。它有利于实现高强度和曲轴高韧性的公平匹配。

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