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首页> 外文期刊>Steel Research International >Processing Map and Hot Deformation Characteristics of 21Cr-11Ni-N-RE Lean Austenitic Heat-Resistant Steel
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Processing Map and Hot Deformation Characteristics of 21Cr-11Ni-N-RE Lean Austenitic Heat-Resistant Steel

机译:21Cr-11Ni-N-RE贫奥氏体耐热钢的加工图和热变形特性

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Hot deformation behavior of 21Cr-11Ni-N-RE lean austenitic heat-resistant steel is investigated within the temperature of 1173-1473 K and the strain rate of 0.01-10 s(-1). Hot deformation equation and prediction modeling of peak stress and strain are obtained. Based on the dynamic material model (DMM) theories, the processing maps are developed. The results show that at lower strain (0.3), the efficiency of power dissipation (eta) increases with increasing temperature and decreasing strain rate; however at the strain of 1.0, eta exhibits an obvious decrease at 1373-1473 K and 0.01 s(-1), in which significant coarsening of grains is found. At large strain (1.0), the optimum hot working domain of test steel should be at 1423-1473 K and strain rate of 1-10 s(-1), in which more uniform and finer microstructure is formed due to the complete dynamic recrystallization (DRX). The average grain diameter of recrystallized grains shows a power law relationship with Z. The larger the Z-value is, the finer the grains are. Besides, the unstable hot working regions are delineated in the processing maps using Prasad instability criterion. As predicted, twinning bands of flow localization and localized kinking observed at 1173-1223 K and 1-10 s(-1) should be responsible for the flow instability.
机译:研究了21Cr-11Ni-N-RE贫奥氏体耐热钢在1173-1473 K温度和0.01-10 s(-1)应变速率下的热变形行为。得到了热变形方程和峰值应力和应变的预测模型。基于动态材料模型(DMM)理论,开发了加工图。结果表明,在较低的应变(0.3)下,功耗的效率(eta)随温度的升高和应变速率的降低而增加;然而,在1.0应变下,eta在1373-1473 K和0.01 s(-1)处表现出明显的降低,其中发现了明显的晶粒粗化。在大应变(1.0)时,试钢的最佳热加工域应为1423-1473 K,应变速率为1-10 s(-1),由于完全的动态再结晶,其中会形成更均匀,更细的组织(DRX)。再结晶晶粒的平均粒径与Z呈幂函数关系。Z值越大,晶粒越细。此外,使用Prasad不稳定性判据在加工图中描绘了不稳定的热加工区域。如预测的那样,在1173-1223 K和1-10 s(-1)处观察到的流动局部化和局部扭结的孪生带应该负责流动的不稳定性。

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