高Ti-Q550钢中Nb、Ti第二相的析出行为  被引量:2

Precipitation Behaviour of Nb,Ti Second Phase in High Ti-Q550 Steel

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作  者:解家英[1] 张利君[1] 王凤琴[1] 

机构地区:[1]首钢技术研究院宽厚板所,北京100043

出  处:《钢铁研究学报》2013年第3期54-58,62,共6页Journal of Iron and Steel Research

摘  要:采用Thermo-Calc软件、热模拟及扫描电镜研究高Ti-Q550钢中微合金的析出规律。采用Thermo-Calc软件计算不同温度下Nb、Ti的析出规律,钛含量对钢中Nb、Ti析出规律及A3的影响。采用热模拟和扫描电镜研究钢中铌相的析出温度。计算结果表明,钛相的析出温度为1 498℃,铌相析出温度为1 251℃;随着钢中钛含量的增加,(Nb,Ti)C相析出温度和A3温度升高,但铌在钢中的固溶量降低;当钛的质量分数小于0.08%时,Ti(N,C)相析出温度随钛含量增加而升高,但当钛的质量分数大于0.08%时,相析出温度基本不变,钛在钢中的固溶量随钛含量增加而增加。The precipitation behavior of microalloy in Q550 steel with high Ti content was investigated by Thermo- Calc software, thermal simulation and SEM. The precipitation behavior of Nb and Ti, the influence of Ti-contents on the precipitation behavior of Nb, Ti and A3 temperature was also studied by Thermo-Calc software. The pre- cipitation temperature of Nb in the steel was measured by thermal simulation and SEM. The calculated results show that the precipitated temperature of Ti phase is 1498 ~C, and precipitated temperature of Nb phase is 1 251 ~C. With increasing of Ti content, the precipitation temperature of (Nb,Ti)C and A3 temperature increase, but the solution of Nb in the steel decrease. With less than 0. 08~ (mass fraction) Ti content, the precipitation temperature of Ti(N,C) increase with increasing of Ti-content, while precipitation temperature is unchanged with more than 0.08% (mass fraction) Ti content, and the solution of Ti increase with the increasing of Ti content.

关 键 词:热力学 Nb、Ti第二相 析出行为 热模拟 扫描电镜 

分 类 号:TG142.33[一般工业技术—材料科学与工程]

 

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