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Microstructure evolution and unified constitutive equations for the elevated temperature deformation of SAE 52100 bearing steel

机译:SAE 52100轴承钢高温变形的组织演变和统一的本构方程

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摘要

Microstructure evolution and hot deformation behaviors of bearing steel SAE 52100 were investigated by hot compression test at temperatures from 950 degrees C to 1160 degrees C and strain rates from 0.1s(-1) to 10.0s(-1). The effects of process parameters (strains, strain rates and temperatures) on recrystallization behavior and plastic flow behavior were discussed. A set of unified visco-plastic constitutive model was built using internal state variables modeling method to predict microstructure evolution and flow stress of bearing steel SAE 52100 during hot deformation. Material parameters within constitutive model were determined using genetic algorithm (GA) optimization technology. The developed model was validated using experimental average grain size, recrystallized fraction and effective stress. Good agreements have been obtained for the predicted and experimental results. It indicates that the derived constitutive model is reliable. Microstructure evolution of SAE 52100 steel in hot metal forming was analyzed using the derived model.
机译:通过在950摄氏度至1160摄氏度的温度和0.1s(-1)至10.0s(-1)的应变速率下的热压缩试验研究了SAE 52100轴承钢的组织演变和热变形行为。讨论了工艺参数(应变,应变速率和温度)对再结晶行为和塑性流动行为的影响。利用内部状态变量建模方法建立了一套统一的粘塑性本构模型,以预测SAE 52100轴承钢热变形过程中的组织演变和流变应力。本构模型中的材料参数是使用遗传算法(GA)优化技术确定的。使用实验平均晶粒尺寸,重结晶分数和有效应力验证了开发的模型。对于预测和实验结果已经取得了良好的协议。这表明导出的本构模型是可靠的。使用导出的模型分析了SAE 52100钢在热金属成形中的组织演变。

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