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Mathematical Modeling of High-Temperature Constitutive Equations and Hot Processing Maps for As-Cast SA508-3 Steel

机译:铸态SA508-3钢高温本构方程和热加工图的数学建模

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The hot deformation behavior and hot workability characteristics of as-cast SA508-3 steel were studied by modeling the constitutive equations and developing hot processing maps. The isothermal compression experiments were carried out at temperatures of 950 degrees C, 1050 degrees C, 1150 degrees C, and 1250 degrees C and strain rates of 0.001 s(-1), 0.01 s(-1), 0.1 s(-1), and 1 s(-1) respectively. The two-stage flow stress models were established through the classical theories on work hardening and softening, and the solution of activation energy for hot deformation was 355.0 kJ mol(-1) K-1. Based on the dynamic material model, the power dissipation and instability maps were developed separately at strains of 0.2, 0.4, 0.6 and 0.8. The power dissipation rate increases with both the increase of temperature and the decrease of strain rate, and the instable region mainly appears on the conditions of low temperature and high strain rate. The optimal hot working parameters for as-cast SA508-3 steel are 1050-1200 degrees C/0.001-0.1 s(-1), with about 25-40% peak efficiency of power dissipation.
机译:通过对本构方程建模并建立热加工图,研究了铸态SA508-3钢的热变形行为和热加工性能。等温压缩实验在950摄氏度,1050摄氏度,1150摄氏度和1250摄氏度的温度下进行,应变率分别为0.001 s(-1),0.01 s(-1),0.1 s(-1) ,和1 s(-1)。通过经典的工作硬化和软化理论建立了两阶段流动应力模型,热变形的活化能解为355.0 kJ mol(-1)K-1。基于动态材料模型,分别绘制了应变为0.2、0.4、0.6和0.8时的功耗和不稳定性图。功率耗散率随温度的升高和应变率的降低而增加,不稳定区域主要出现在低温高应变率的条件下。 SA508-3铸钢的最佳热加工参数为1050-1200摄氏度/0.001-0.1 s(-1),峰值功耗峰值约为25-40%。

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