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《Chinese Journal of Rare Metals》 2017-02
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Constitutive Modeling for Elevated Temperature Flow Behavior of Fe-20Cr-30Ni-0.6Nb-2Al-Mo Alloy

Luo Rui;Cheng Xiaonong;Xu Guifang;Guo Shun;Zheng Qi;Zhu Jingjing;School of Materials Science and Engineering,Jiangsu University;  
To study the flow stress behavior of an AFA-type alloy,Fe-20Cr-30Ni-0.6Nb-2Al-Mo(%,atom fraction),isothermal hot compression tests were performed at a temperature range of 1000 ~ 1150 ℃ with strain rates of 0.01 ~ 1.00 s-1using Gleeble 3500thermal-mechanical simulator.Based on the data of hot compression tests,the flow stress curves of this alloy under different deformation conditions were plotted,and the effects of hot deformation conditions on the microstructure were analyzed.The constitutive model considering the compensation of strain for predicting the flow stress of AFA alloy under all test conditions was developed on the basis of Arrhenius-type equation.The functional relations between material constants in the model and strain were identified by sixth order polynomial fitting.Experimental results showed that the flow stress decreased with the increase of temperature at the same strain rate,while increased with the increase of strain rate at the same deformation temperature during high temperature compression deformation.The dynamic recrystallization was more likely to occur at a low strain rate and high deformation temperature.The accuracy of the developed model was evaluated using standard statistical parameters such as correlation coefficient and average absolute relative error.It suggested that this developed constitutive equation could accurately predict high temperature flow behaviors of Fe-20Cr-30Ni-0.6Nb-2Al-Mo alloy and could be used to numerically analyze the hot deformation process of this alloy.
【Fund】: “十二五”国家高技术研究发展计划(863计划)重大项目(2012AA03A501);; 江苏省2014年度普通高校研究生科研创新计划项目(KYLX_1027);; 江苏省2015度普通高校研究生科研创新计划项目(KYLX15_1057)资助
【CateGory Index】: TG132.3
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