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Ti-Mo铁素体基微合金钢的连续冷却转变行为

YANG Hong-bo, SUN Jia-tong,ZHAO He-ran, WANG Hao,QI Wei-wei

Transactions of Materials and Heat Treatment(2023)

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Abstract
利用Gleeble 3800热模拟实验机分别获得了 Ti-Mo铁素体基微合金钢在静态和动态经不同速率冷却后的温度-膨胀量曲线,结合金相法绘制了Ti-Mo微合金钢的连续冷却转变(CCT)曲线.结果表明:无论是静态CCT还是动态CCT,随着冷却速率的增大,实验钢的珠光体与铁素体均减少,贝氏体体积分数增加,当冷却速率达到30℃/s时,组织全部为贝氏体.实验钢铁素体相变的开始温度为800℃,压缩变形扩大了珠光体相区使其向左扩张,缩小了贝氏体相区,并降低铁素体转变开始温度.在制定控轧控冷工艺时,为了使实验钢在卷取过程中获得铁素体+粒状贝氏体组织,从而进一步优化强韧性能,建议Ti-Mo铁素体基微合金钢终轧温度应高于800℃,轧后冷却速率应高于30 ℃/s,并且要在贝氏体相变高温区完成卷取.
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Key words
Ti-Mo microalloyed steel,CCT,microstructure,cooling rate,Vickers hardness
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