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20Mn5 实心钢锭热压缩过程中的热变形行为及双阶段本构模型

Hot Deformation Behavior and a Two-Stage Constitutive Model of 20Mn5 Solid Steel Ingot during Hot Compression.

作者信息

Liu Min, Ma Qing-Xian, Luo Jian-Bin

机构信息

Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China.

出版信息

Materials (Basel). 2018 Mar 16;11(3):434. doi: 10.3390/ma11030434.

Abstract

20Mn5 steel is widely used in the manufacture of heavy hydro-generator shaft forging due to its strength, toughness, and wear resistance. However, the hot deformation and recrystallization behaviors of 20Mn5 steel compressed under a high temperature were not studied. For this article, hot compression experiments under temperatures of 850-1200 °C and strain rates of 0.01 s-1 s were conducted using a Gleeble-1500D thermo-mechanical simulator. Flow stress-strain curves and microstructure after hot compression were obtained. Effects of temperature and strain rate on microstructure are analyzed. Based on the classical stress-dislocation relationship and the kinetics of dynamic recrystallization, a two-stage constitutive model is developed to predict the flow stress of 20Mn5 steel. Comparisons between experimental flow stress and predicted flow stress show that the predicted flow stress values are in good agreement with the experimental flow stress values, which indicates that the proposed constitutive model is reliable and can be used for numerical simulation of hot forging of 20Mn5 solid steel ingot.

摘要

20Mn5钢因其强度、韧性和耐磨性而广泛应用于重型水轮发电机轴锻件的制造。然而,尚未对20Mn5钢在高温下压缩时的热变形和再结晶行为进行研究。在本文中,使用Gleeble-1500D热机械模拟器在850-1200°C的温度和0.01 s-1的应变速率下进行了热压缩实验。获得了热压缩后的流变应力-应变曲线和微观组织。分析了温度和应变速率对微观组织的影响。基于经典的应力-位错关系和动态再结晶动力学,建立了一个两阶段本构模型来预测20Mn5钢的流变应力。实验流变应力与预测流变应力的比较表明,预测流变应力值与实验流变应力值吻合良好,这表明所提出的本构模型是可靠的,可用于20Mn5实心钢锭热锻的数值模拟。

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