首页> 外文期刊>ISIJ international >Influence of Deformation Temperature on γ-α Phase Transformation in Nb–Ti Microalloyed Steel during Continuous Cooling
【24h】

Influence of Deformation Temperature on γ-α Phase Transformation in Nb–Ti Microalloyed Steel during Continuous Cooling

机译:变形温度对Nb-Ti微合金钢连续冷却过程中γ相变的影响

获取原文
       

摘要

The dynamic continuous-cooling-transformation (CCT) diagrams of Nb–Ti microalloyed steel for four different deformation temperatures of 850, 900, 950 and 975°C were plotted by means of a combined method of dilatometry and metallography. The influence of deformation temperature on continuous cooling transformation behavior and transformation microstructure was elucidated. The reason that the polygonal ferrite transformation field is shifted to the right and moved down as the deformation temperature is increased and the progress of transformation for lowest continuous cooling rate of 0.5°C/s was obviously retarded at the lowest deformation temperature of 850°C was discussed in details based on transformation kinetics and strain-induced precipitation kinetics, respectively. Moreover, the polygonal ferrite grain size for lowest continuous cooling rate of 0.5°C/s can be significantly refined from approx. 15.4 μ m to 9.4 μ m as the deformation temperature is reduced from 975°C to 850°C. In addition, the empirical equation to calculate γ -α phase transformation start temperature was established, and the calculated A_(r3) temperatures are in good agreement with measured ones.
机译:结合膨胀法和金相学方法,绘制了Nb-Ti微合金钢在850、900、950和975°C四种不同变形温度下的动态连续冷却转变(CCT)图。阐明了变形温度对连续冷却相变行为和相变组织的影响。随着变形温度的升高,多边形铁素体相变场向右移动并向下移动的原因,在最低变形温度为850°C时,最低连续冷却速度为0.5°C / s的转变进程明显受阻。分别基于转化动力学和应变诱导的沉淀动力学进行了详细讨论。此外,最低连续冷却速度为0.5°C / s时,多边形铁素体晶粒尺寸可以从大约5%大幅降低。随着变形温度从975℃降低到850℃,从15.4μm减小到9.4μm。另外,建立了计算γ-γ相变开始温度的经验方程,计算出的A_(r3)温度与实测温度吻合良好。

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