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Effect of Titanium on Hot Deformation Behaviors of Boron Microalloyed Steel

机译:钛对硼微合金钢热变形行为的影响

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The hot deformation behaviors of titanium-free and titanium-treated boron microalloyed steel were investigated at the temperatures from 850°C to 1100°C and strain rates from 0.1 s~(?1) to 10 s~(?1) on Gleeble-2000 thermo-mechanical simulator. It was found that the flow stress of the titanium-treated steel is lower than that of titanium-free at lower strain rates, indicating that titanium addition generates a softening effect. The flow stress constitutive equations of hot deformation were developed for the experimental steels, the activation energy of titanium-treated steel (299.7 kJ·mol~(?1)) is higher than that of the titanium-free steel (286.9 kJ·mol~(?1)). Additionally, it is interesting to note that the peak and critical strain are lowered by titanium addition, indicating that titanium has the ability to promote the onset of dynamic recrystallization. However, the dynamic recrystallization kinetics of titanium-free steel is faster than that of titanium-treated steel.
机译:研究了无钛和钛处理过的硼微合金钢在850°C至1100°C的温度以及0.1 s〜(?1)至10 s〜(?1)的应变下的热变形行为。 2000热机械模拟器。已经发现,在较低的应变速率下,钛处理的钢的流动应力低于无钛的流动应力,表明钛的添加产生软化作用。建立了实验钢热变形的流变应力本构方程,钛处理钢的活化能为299.7 kJ·mol〜(?1),高于无钛钢为286.9 kJ·mol〜。 (?1))。此外,有趣的是,钛的添加降低了峰值和临界应变,表明钛具有促进动态重结晶发生的能力。但是,无钛钢的动态重结晶动力学要比钛处理钢快。

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