Use of In-Situ Laser-Ultrasonics Measurements to Develop Robust Models Combining Deformation, Recovery, Recrystallization and Grain Growth

S. Liang, D. Lévesque, N. Legrand, H. Zurob
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引用次数: 7

Abstract

Abstract The hot deformation and subsequent annealing of two C-Mn steels have been investigated using a Gleeble 3500 simulator. The flow stress during deformation and subsequent relaxation stress were recorded. The grain size evolution was simultaneously evaluated by the in-situ laser-ultrasonic (LUS) measurements. The LUS data allowed clear identification of the dominant annealing phenomena. Excellent correlation was obtained between stress relaxation and laser-ultrasonic data, which provided additional confidence in the identification of the processes taking place. The solute drag effect of niobium led to the delayed onset and completion of recrystallization. Lower temperature generally slowed down the kinetics. Robust models combining deformation, recovery, recrystallization and grain growth have been developed and validated against the experimental data. The onset of recrystallization can be predicted precisely, as well as the time for recrystallization completion. As can be seen, the models are in good agreements with both the mechanical (stress evolution) and grain-size (laser-ultrasonic) data.
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利用原位激光超声测量建立结合变形、恢复、再结晶和晶粒生长的稳健模型
摘要:利用Gleeble 3500模拟装置研究了两种C-Mn钢的热变形及后续退火过程。记录了变形过程中的流变应力和变形后的松弛应力。通过原位激光超声(LUS)测量,同时对晶粒尺寸演变进行了评价。LUS数据可以清楚地确定主要的退火现象。在应力松弛和激光超声数据之间获得了良好的相关性,这为识别发生的过程提供了额外的信心。铌的溶质拖拽效应导致再结晶的开始和完成延迟。较低的温度通常会减慢动力学。建立了结合变形、恢复、再结晶和晶粒长大的鲁棒模型,并根据实验数据进行了验证。可以精确地预测再结晶的开始时间和完成时间。可以看出,模型与力学(应力演化)和晶粒尺寸(激光超声)数据吻合良好。
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