首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Effects of Initial Nucleation Condition at the Start Block on the Grain Size and Growth Direction in Directionally Solidified CM247LC Superalloy
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Effects of Initial Nucleation Condition at the Start Block on the Grain Size and Growth Direction in Directionally Solidified CM247LC Superalloy

机译:定向凝固CM247LC高温合金起始块初始成核条件对晶粒尺寸和生长方向的影响

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摘要

The grain size and growth direction of a directionally solidified turbine blade were evaluated by the initial nucleation condition at the start block of directional solidification. The initial nucleation condition was controlled by inserting a Ni foil on the directional solidification plate of the directional solidification furnace. Fine grains with good orientation were obtained in the faster cooling condition at the start block. The nucleus number was compared with the cooling rate of the start block by electron back scattered diffraction (EBSD). DSC (differential scanning calorimeter) analysis was performed to compare the melting point and undercooling for nucleation of the coarse nuclei and fine nuclei of the start block. The faster cooling condition at the start block showed more undercooling for nucleation and smaller size of nuclei which resulted in a fine grain with good orientation in the directional turbine blade.
机译:在定向凝固的起始阶段,通过初始成核条件评估了定向凝固的涡轮叶片的晶粒尺寸和生长方向。通过在定向凝固炉的定向凝固板上插入镍箔来控制初始成核条件。在起始块处以较快的冷却条件获得了具有良好取向的细晶粒。通过电子背散射衍射(EBSD)将核数与起始块的冷却速率进行比较。进行DSC(差示扫描量热仪)分析以比较熔点和过冷度,以分析起始嵌段的粗核和细核。起始块处较快的冷却条件显示出更多的核过冷度和较小的核尺寸,这导致了定向涡轮机叶片中具有良好取向的细晶粒。

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