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Hot Deformation and Processing Window Optimization of a 70MnSiCrMo Carbide-Free Bainitic Steel

机译:70MnSiCrMo无碳化贝氏体钢的热变形和加工窗口优化

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摘要

The hot deformation behavior of a high carbon carbide-free bainitic steel was studied through isothermal compression tests that were performed on a Gleeble-1500D thermal mechanical simulator at temperatures of 1223–1423 K and strain rates of 0.01–5 s ?1 . The flow behavior, constitutive equations, dynamic recrystallization (DRX) characteristics, and processing map were respectively analyzed in detail. It is found that the flow stress increases with increasing the strain rate and decreases with increasing the temperature, and the single-peak DRX can be easily observed at high temperatures and/or low strain rates. The internal relationship between the flow stress and processing parameters was built by the constitutive equations embracing a parameter of Z/A, where the activation energy for hot deformation is 351.539 kJ/mol and the stress exponent is 4.233. In addition, the DRX evolution and the critical conditions for starting DRX were discussed. Then the model of the DRX volume fraction was developed with satisfied predictability. Finally, the processing maps at different strains were constructed according to the dynamic material model. The safety domains and flow instability regions were identified. The best processing parameters of this steel are within the temperature range of 1323–1423 K and strain rate range of 0.06–1 s ?1 .
机译:通过在Gleeble-1500D热力学仿真器上在1223–1423 K的温度和0.01–5 s?1的应变速率下进行的等温压缩试验研究了高无碳化贝氏体钢的热变形行为。详细分析了流动行为,本构方程,动态重结晶(DRX)特性和加工图。发现流动应力随着应变率的增加而增加,而随着温度升高而减小,并且在高温和/或低应变率下可以容易地观察到单峰DRX。流动应力与加工参数之间的内部关系由包含Z / A参数的本构方程建立,其中热变形的活化能为351.539 kJ / mol,应力指数为4.233。此外,还讨论了DRX的演变以及启动DRX的关键条件。然后开发了具有满意可预测性的DRX体积分数模型。最后,根据动态材料模型建立了不同应变下的加工图。确定了安全域和流动不稳定区域。该钢的最佳加工参数是在1323–1423 K的温度范围内以及0.06–1 s?1的应变速率范围内。

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