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Prediction of High-temperature Deformation Behavior of Low-carbon Bainitic Nb-Ti Micro-alloyed Steel Based on an Improved Strain-Stress Relation

机译:基于改进应力关系的低碳贝氏体Nb-Ti微合金钢的高温变形性能预测

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摘要

Low-carbon bainitic Nb-Ti micro-alloyed steel was used in the present study to investigate the high-temperature deformation behavior. The high-temperature compression was carried out on a thermal simulation machine with a temperature range of 800 degrees C-1200 degrees C and a strain rate of 0.1-15 s(-1). Using work-hardening and softening mechanisms (dynamic recovery, dynamic recrystallization), a constitutive model was built on the basis of a newly proposed strain-stress relation, and flow stress at a strain rate of 0.5 and 10 s(-1) was employed to test the established model. By means of comparing predicted and calculated results, the reliability of the model was proved, and the predictability of the flow stress model was also quantified in terms of root mean square error and average absolute relative error, which were calculated to be less than 11 MPa and 7.00%, respectively. These error estimators confirm the constitutive models based on the improved strain-stress relation and indicate an effective method to predict the high-temperature flow stress with high precision.
机译:在本研究中使用低碳贝氏体Nb-Ti微合金钢以研究高温变形行为。高温压缩在热仿真机上进行,温度范围为800℃-1200摄氏度和0.1-15秒(-1)的应变率。使用工作硬化和软化机制(动态恢复,动态再结晶),基于新提出的应力关系构建了构成模型,采用了0.5和10s(-1)的应变速率的流量应力测试建立的模型。通过比较预测和计算的结果,证明了模型的可靠性,并且在根均方误差和平均绝对相对误差方面也量化了流量应力模型的可预测性,该误差计算为小于11MPa分别为7.00%。这些误差估计器基于改进的应变应力关系确认本构模型,并指示具有高精度高温流应力的有效方法。

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