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Hot deformation behavior of the post-cogging FGH4096 superalloy with fine equiaxed microstructure

机译:具精细等轴组织的后嵌齿FGH4096高温合金的热变形行为

摘要

Hot deformation behavior of the post-cogging FGH4096 superalloy with fine equiaxed microstructure has been characterized by isothermal compression in the temperature (T d) ranging 1050-1140 °C and strain rates (ε̇) ranging 0.001-1.0 s - 1. The apparent activation energy of deformation was calculated to be 750 kJ/mol. This value is well above that for the HIPed superalloy, which is believed to attribute to the refinement of grain size and boundary structure after cogging treatment. The constitutive equation that described the flow stress as a function of the strain rate and deformation temperature was proposed for high temperature deformation. The processing maps were constructed to evaluate the efficiency of power dissipation (η) and recognize the instability regimes for the final-forging process. Optimum parameters were predicted in temperatures of 1080-1110 °C and strain rates of 0.1-1.0 s - 1, in which the η values were higher than others. Otherwise, the plasticity instability was predicted in two regimes, the first of the temperatures of 1100-1120 °C and strain rate higher than 0.4 s - 1, and the second of the temperatures lower than 1060 °C and strain rates of 0.001-0.4 s - 1.
机译:具有精细等轴显微组织的嵌齿后FGH4096高温合金的热变形行为已通过在温度(T d)范围为1050-1140°C和应变率(ε̇)范围为0.001-1.0 s-1的等温压缩进行表征。变形能经计算为750 kJ / mol。该值远高于HIPed高温合金,据信这归因于齿槽化处理后晶粒尺寸和边界结构的细化。对于高温变形,提出了将流动应力描述为应变率和变形温度的函数的本构方程。构造加工图以评估功耗(η)的效率并识别最终锻造过程的不稳定性状态。预测的最佳参数是在1080-1110°C的温度和0.1-1.0 s-1的应变速率下,其中η值高于其他值。否则,将在两个状态下预测塑性不稳定性,第一个温度为1100-1120°C,应变速率高于0.4 s-1,第二个温度低于1060°C,应变速率为0.001-0.4 s-1。

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