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Simulation of microstructures for Alloy 718 blade forging using 3D FEM simulator

机译:使用3D FEM仿真器模拟718合金叶片锻造的微观结构

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Mechanical properties of Ni-Cr-Fe-based Alloy 718 depend very much on the grain size, as well as the presence of strengthening phases, γ′ and γ″. The grain size of superalloy parts can be controlled by the thermo-mechanical processes, including heating, forging and cooling sequences. In order to predict the evolution of grain size in Alloy 718 blade forging, a series of constitutive equations for dynamic recrystallization, meta-dynamic recrystallization and grain growth were developed and implemented into a 3D FE simulator. The evolution of grain structure in the process of two-step blade forging of Alloy 718 was simulated using the 3D FE simulator combined with a microstructure module. The microstructure prediction tool was validated by comparing the simulated grain structure with that of the experimental blade-type forging.
机译:Ni-Cr-Fe基合金718的机械性能很大程度上取决于晶粒尺寸以及强化相γ'和γ''的存在。超级合金零件的晶粒尺寸可以通过热机械过程控制,包括加热,锻造和冷却顺序。为了预测718合金叶片锻造中晶粒尺寸的演变,开发了一系列用于动态再结晶,亚动态再结晶和晶粒长大的本构方程,并将其应用到3D FE仿真器中。使用3D FE仿真器结合微结构模块,对718合金两步锻造过程中的晶粒结构演变进行了模拟。通过将模拟晶粒结构与实验叶片型锻件的晶粒结构进行比较,验证了微结构预测工具的有效性。

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