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Effect of Construction Manner of Mould Cluster on Stray Grain Formation in Dummy Blade of DD6 Superalloy

机译:结晶器团簇的构建方式对DD6高温合金假叶片叶片杂粮形成的影响

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A dummy blade of Ni-based single crystal (SX) superalloy was modelled to investigate the stray grain (SG) defect by both experiment and simulation. Three construction manners of mould cluster (CMMC) with 0°, 45° and 90° assembling angle were considered. The experimental results reveal a strong dependence of SG sensitivity upon CMMC. Profuse SGs took place in the case of 0°, but almost no one shown in those of 45° and 90°. The FEM simulation results indicate that SG occurrence is not only determined by critical nucleation undercooling, but also the geometrical characteristic, shape of liquidus isotherm and other three important effects (shadow effect, channel effect and dimension effect). The tendency of SG formation increases with the increase of number of these effects. By means of the combination effect consisting of the above three effects, SG occurrence can be qualitatively predicted and process window is more accurately modified.
机译:对镍基单晶(SX)超合金的假刀片进行了建模,以通过实验和仿真研究杂散晶粒(SG)缺陷。考虑了组装角为0°,45°和90°的三种模具造型(CMMC)。实验结果表明,SG灵敏度强烈依赖于CMMC。大量SG发生在0°的情况下,但几乎没有人出现在45°和90°的情况下。有限元模拟结果表明,SG的产生不仅取决于临界形核过冷,而且还取决于几何特征,液相线等温线形状和其他三个重要影响(阴影​​影响,通道影响和尺寸影响)。随着这些效应数目的增加,SG形成的趋势增加。通过由上述三个效应组成的组合效应,可以定性地预测SG的出现,并更准确地修改过程窗口。

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