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首页> 外文期刊>Chemical Engineering Communications >Effect of Cooling Rates on Segregation and Density Variation in the Mushy Zone during Solidification of Superalloy Inconel 718
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Effect of Cooling Rates on Segregation and Density Variation in the Mushy Zone during Solidification of Superalloy Inconel 718

机译:冷却速率对Inconel 718高温合金凝固过程中糊状区偏析和密度变化的影响

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摘要

The microstructure and segregation of experimental samples of the superalloy Inconel 718 solidified at different cooling rates have been investigated by SEM and EDAX. The equilibrium phase fraction diagrams of Inconel 718 and the segregated liquid composition were calculated by Thermo-Calc. The experimental and calculated results were in good agreement with those of an Inconel 718 ingot, and they indicated that, at a cooling rate less than 3°C/min, heavy Nb and Mo segregation resulted in Laves phase formation directly from the liquid. The density of the liquid surrounding the Laves phase decreased and the region between the two Laves precipitates (inter-precipitate) often had the lowest density. A density difference (or micro inter-precipitate density inversion) existed between the inter-precipitate liquid and the original liquid at the same or higher temperatures where there were no liquid-precipitated Laves.
机译:通过SEM和EDAX研究了在不同冷却速率下凝固的超合金Inconel 718实验样品的组织和偏析。通过Thermo-Calc计算Inconel 718的平衡相分数图和分离的液体组成。实验和计算结果与Inconel 718铸锭的结果吻合良好,他们表明,在冷却速率低于3°C / min时,大量Nb和Mo偏析会直接从液体中形成Laves相。 Laves相周围的液体密度降低,并且两个Laves沉淀物(中间沉淀物)之间的区域通常具有最低的密度。在相同或更高的温度(没有Laves沉淀)的情况下,中间沉淀液体和原始液体之间存在密度差(或微小的中间沉淀密度倒置)。

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