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Effect of Strain rate on Dynamic Recrystallization Behavior for V micro-alloy High-carbon Steel

机译:应变率对V微合金高碳钢动态再结晶行为的影响

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Isothermal constant strain rate compression tests on high-carbon steel are carried out under strain rate of 1 s~(-1), 10 s~(-1) and 50 s~(-1) respectively and deformation of 0.7 using the THERMECMASTOR-Z thermal simulator at a temperature of 1000°C. The austenite grain morphology before and after deformation and the true stress-strain curves during the deformation process are analyzed. The experimental results show that increased strain rate can obviously contribute to the grain refinement, and when the strain rate is at low level (e.g. 1 s~(-1)), increased strain rate can further help refine the grains. And under the same temperature conditions, as the deformation rate rises, peak stress will move toward the direction of strain increment, thus the dynamic recrystallization is not apt to occur.
机译:高碳钢上的等温恒定应变速率压缩试验分别在1S〜(-1),10 s〜(-1)和50 s〜(-1)的应变速率下进行,并使用热敏大师的变形0.7 Z温度为1000°C的热模拟器。分析了变形前后的奥氏体晶粒形态和变形过程中的真正应力 - 应变曲线。实验结果表明,增加的应变率可以显着促进晶粒细化,并且当应变率处于低水平时(例如,1 s〜(-1)),增加的应变率可以进一步帮助改进晶粒。在相同的温度条件下,随着变形速率上升,峰值应力将朝向应变增量方向移动,因此动态再结晶不易发生。

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