首页> 外文会议>International Manufacturing Conference in China; 20060921-23; Xi'an(CN) >Numerical Simulation of Temperature Field and Grain Structure in the Solidification of K4169 Superalloy Shell Casting
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Numerical Simulation of Temperature Field and Grain Structure in the Solidification of K4169 Superalloy Shell Casting

机译:K4169高温壳铸件凝固过程温度场和晶粒组织的数值模拟。

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摘要

The associated modeling method of complex foundry system was investigated under software environment of PRO/E and ANSYS. The 3D-structure of K4169 superalloy shell castings constructed by applying PRO/E was guided into ANSYS to reconstruct the whole foundry system. The variation of temperature field with solidifying time was calculated by ANSYS to check each key node in casting structures. According to the temperature changing curves of key nodes, the grain structural feature values were obtained by using consecutive nucleation model. Based on the 2D cellular automaton method, the evolution of grain structure in some sections of casting was visually simulated. The results of simulation are good accordance with the measured grain feature values.
机译:在PRO / E和ANSYS软件环境下研究了复杂铸造系统的相关建模方法。通过应用PRO / E构建的K4169高温壳铸件的3D结构被引入ANSYS,以重建整个铸造系统。用ANSYS计算了温度场随凝固时间的变化,以检查铸件中的每个关键节点。根据关键节点的温度变化曲线,采用连续成核模型获得了晶粒结构特征值。基于二维元胞自动机方法,目视模拟了铸件某些部分的晶粒结构演变。模拟结果与实测晶粒特征值吻合良好。

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