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A Constitutive Equation for the Flow and Densification Behaviors of Powder Metallurgy Fe-0.5C-2Cu Steel at Elevated Temperatures

机译:升高温度下粉末冶金Fe-0.5C-2Cu钢流动和致密化行为的组成方程

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摘要

The flow and densification behaviors of powder metallurgy (PM) Fe-0.5C-2Cu (wt%) steel are investigated by conducting isothermal hot compression tests on a Gleeble 3800 thermo-simulator in the temperature range of 850-1000 degrees C, a strain rate of 0.01-10 s(-1), and a compressibility of 35- 65%. It is found that the true stress-strain curves obtained from the hot compression tests demonstrated the characteristics typical of persistent hardening as the gradual decrease of the stress rise. The experimental results show that the flow and densification behaviors of the PM steel are greatly affected by the deformation temperature, strain rate, and deformation amount. A constitutive equation that predicts the dynamic flow stress and relative density in hot compression of the PM steel is established. The predicted values of flow stress and relative density are in good agreement with the experimental results, which demonstrate that the proposed constitutive equation is able to well characterize the flow and densification behaviors of the PM steel at elevated temperatures. The present study can provide important and basic data for the finite element simulation of plastic working processes of the PM steel.
机译:通过在850-1000摄氏度的温度范围内进行高温3800热模拟器进行等温热压缩试验,研究了粉末冶金(PM)Fe-0.5C-2Cu(WT%)钢的流动和致密化行为。速率为0.01-10秒(-1),压缩性为35-65%。发现从热压缩试验中获得的真正应力 - 应变曲线证明了作为应力升高的逐渐减小的持续硬化的特性。实验结果表明,PM钢的流动和致密化行为受变形温度,应变率和变形量的大大影响。建立了预测PM钢的热压缩中动态流应力和相对密度的构成方程。流量应力和相对密度的预测值与实验结果吻合良好,这表明所提出的本构体方程能够很好地表征PM钢在升高温度下的流动和致密化行为。本研究可以为PM钢的塑料工作过程的有限元模拟提供重要的和基本数据。

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