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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of melt thermal history on solidification behavior and microstructural characteristics of a third-generation Ni-based single crystal superalloy
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Effect of melt thermal history on solidification behavior and microstructural characteristics of a third-generation Ni-based single crystal superalloy

机译:熔体热历史对第三代镍基单晶高温合金凝固行为和显微组织特性的影响

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The melt superheating treatment is performed on a third-generation Ni-based single crystal superalloy during directional solidification, aiming to investigate the influence of melt thermal history (melt superheating temperature, superheating time and cooling rate) on solidification behavior and microstructural characteristics. The results show that the nucleation undercooling increases nonlinearly with the increase of melt superheating temperature from 1450 to 1780 degrees C, but decreases when the melt superheating temperature further increases up to 1800 degrees C. The nucleation undercooling first has little change and then increases sharply with increasing the melt superheating time. The critical superheating time is obtained to be about 15 min. Moreover, it is found that the higher the cooling rate is, the larger the nucleation undercooling and liquidus-solidus range are. Additionally, the segregation is reduced, and the dendrite and gamma' phase are obviously refined when the superheating temperature increases from 1500 to 1700 degrees C. The influence mechanism of melt superheating treatment on the nucleation undercooling and solidification microstructure is discussed, which is helpful for optimizing the process parameters and improving the metallurgical quality of Ni-based single crystal superalloy. (C) 2016 Elsevier B.V. All rights reserved.
机译:在定向凝固过程中,对第三代镍基单晶高温合金进行了熔体过热处理,旨在研究熔体的热历史(熔体过热温度,过热时间和冷却速率)对凝固行为和微观组织特性的影响。结果表明,随着熔体过热温度从1450升高到1780℃,成核过冷量呈非线性增加,而随着熔体过热温度进一步升高到1800℃,成核过冷量则呈非线性下降。成核过冷量先变化不大,然后随着温度的升高而急剧增加。增加熔体过热时间。获得的临界过热时间为约15分钟。此外,发现冷却速率越高,成核过冷和液相线-固相线范围越大。另外,当过热温度从1500℃升高到1700℃时,偏析减少,枝晶和γ′相得到明显细化。探讨了熔体过热处理对成核过冷和凝固组织的影响机理,为进一步研究提供了理论依据。优化工艺参数,提高镍基单晶高温合金的冶金质量。 (C)2016 Elsevier B.V.保留所有权利。

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