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Study on the behavior of medium carbon vanadium microalloyed steel by hot compression test

机译:热压试验研究中碳钒微合金钢的行为

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This article investigates the hot working behavior of medium carbon vanadium microalloyed steel by hot compression tests over the temperature range of 850-1100℃ and strain rate range of 0.001-0.5 s~(-1) to strain of 0.8. In this study, the general constitutive equations were used to determine the hot working constants. The peak stress (σp) and strain (εp) for initiation of dynamic recrystallization (DRX) at different temperatures and strain rates were calculated. The power law, exponential and hyperbolic sinusoidal types of Zener-Hollomon equations were used to determine the hot deformation activation energy (Q). The results suggested that the highest correlation coefficient was achieved for the hyperbolic sine law for the studied material. The magnitude of hot deformation activation energy (Q) was obtained as 319.910kJ/mol. The classical single peak DRX was observed in most of temperatures and strain rates. However, for temperature of 1100℃ and strain rates of 0.001 s~(-1) 0.01 s~(-1), and also for temperature of 950 ℃ and strain rate of 0.001 s~(-1) the multiple peak dynamic recrystallization (MDRX) was observed, which showed that the 'recrystallization' was an observed strain rate behavior.
机译:本文通过热压缩试验研究了中碳钒钒微合金钢在850-1100℃的温度范围和0.001-0.5 s〜(-1)的应变速率范围至0.8的热加工行为。在这项研究中,一般的本构方程被用来确定热工作常数。计算了在不同温度和应变速率下开始动态再结晶(DRX)的峰值应力(σp)和应变(εp)。使用Zener-Hollomon方程的幂律,指数和双曲线正弦类型来确定热变形激活能(Q)。结果表明,所研究材料的双曲正弦定律实现了最高相关系数。获得的热形变活化能(Q)的大小为319.910kJ / mol。在大多数温度和应变速率下均观察到经典的单峰DRX。但是,对于1100℃的温度和0.001 s〜(-1)的应变率为0.01 s〜(-1),在950℃的温度和0.001 s〜(-1)的应变率的情况下,多峰动态重结晶(观察到MDRX),这表明``重结晶''是观察到的应变速率行为。

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