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Analysis of deformation and microstructure evolution during the cogging process of Waspaloy alloy

机译:Waspaloy合金齿槽加工过程中的变形和组织演变分析。

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The hot deformation behavior of Waspaloy alloy has been investigated by two-pass hot cogging process. The paper presents theoretical end experimental analysis of deformations and microstructural evolutions. The results of a thermo-mechanical simulation for the spatial hot cogging process on the shaped anvils with the application of the three–dimensional finite element method, are presented. The numerical calculation gave an assessment of the effective strain, mean stress and temperature distributions in the work-piece. Models for predicting the evolution of microstructure were developed for dynamic recrystallization and grain growth phenomena. The influence of shape of the anvils on the grain size after dynamic recrystallization was analyzed. The numerical analysis was performed using a commercial program "DEFORM 3D" with thermo-mechanical and microstructural evolution coupled. The results are compared with the experimental data, a good agreement between the predicted and experimental results was obtained.
机译:Waspaloy合金的热变形行为已通过两遍热齿槽加工进行了研究。本文介绍了变形和微观结构演变的理论最终实验分析。利用三维有限元方法,对成形砧座进行空间热嵌齿过程的热力学模拟结果进行了介绍。数值计算可以评估工件中的有效应变,平均应力和温度分布。针对动态再结晶和晶粒生长现象,开发了预测微观结构演变的模型。分析了砧座形状对动态再结晶后晶粒尺寸的影响。数值分析是使用商业程序“ DEFORM 3D”进行的,其中结合了热机械和微观结构演变。将结果与实验数据进行比较,预测结果与实验结果吻合良好。

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