The recrystallization behavior of a Nb-bearing steel was investigated during multipass deformation under continuous cooling conditions. By a series of six-pass compression tests conducted on a thermomechanical simulat...The recrystallization behavior of a Nb-bearing steel was investigated during multipass deformation under continuous cooling conditions. By a series of six-pass compression tests conducted on a thermomechanical simulator, the effect of deformation parameters, including strain, strain rate and interpass time, on the no-recrystallization temperature (T) was determined. The results show that T decreases with increasing strain and also decreases slightly with increasing strain rate. The strain has more appreciable influence on the T compared with strain rate. When the interpass time is less than 10 s, the T decreases with increasing interpass time. The mathematical model of T was established considering the effect of pass strain, strain rate and interpass time. The calculated results agreed well with the actual experimental value.展开更多
简述了微合金钢中微量元素 Nb 的主要作用,回顾了应变诱导析出的研究方法及优缺点,阐明了变形奥氏体应变诱导析出相的种类,晶体结构,析出相的形成顺序、形貌和分布,分析了影响析出动力学的主要因素并简要介绍了应变诱导析出动力学模型...简述了微合金钢中微量元素 Nb 的主要作用,回顾了应变诱导析出的研究方法及优缺点,阐明了变形奥氏体应变诱导析出相的种类,晶体结构,析出相的形成顺序、形貌和分布,分析了影响析出动力学的主要因素并简要介绍了应变诱导析出动力学模型的最新发展。展开更多
基金Funded by the National Natural Science Foundation of China(No.21004037)the Fundamental Research Funds for the Central Universities(No.N140704002)the Natural Science Foundation of Liaoning Province(No.2015020180)
文摘The recrystallization behavior of a Nb-bearing steel was investigated during multipass deformation under continuous cooling conditions. By a series of six-pass compression tests conducted on a thermomechanical simulator, the effect of deformation parameters, including strain, strain rate and interpass time, on the no-recrystallization temperature (T) was determined. The results show that T decreases with increasing strain and also decreases slightly with increasing strain rate. The strain has more appreciable influence on the T compared with strain rate. When the interpass time is less than 10 s, the T decreases with increasing interpass time. The mathematical model of T was established considering the effect of pass strain, strain rate and interpass time. The calculated results agreed well with the actual experimental value.