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双硅酸盐高熵材料热稳定性研究
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作者单位:

中国民航大学

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中图分类号:

TG148

基金项目:

中央高校基本业务经费资助项目(3122019189)


Study on Thermal Stability of Bisilicate High Entropy Materials
Author:
Affiliation:

Civil Aviation University of China

Fund Project:

Funding Program for Basic Operating Funds for Central Universities (3122019189)

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    摘要:

    通过固相反应制备了Yb2Si2O7和高熵双硅酸盐粉末(Yb0.25Y0.25Lu0.25Er0.25)2Si2O7、(Yb0.2Y0.2Lu0.2Er0.2Sc0.2)2Si2O7、(Yb0.2Y0.2Lu0.2Er0.2Ho0.2)2Si2O7,对原始和保温处理后四种陶瓷块体的物相组成、热膨胀系数、热导率和弹性模量进行分析。结果表明:高熵(Yb0.25Y0.25Lu0.25Er0.25)2Si2O7的热膨胀系数和热导率与Yb2Si2O7相似,弹性模量降低了10.28%;(Yb0.2Y0.2Lu0.2Er0.2Sc0.2)2Si2O7与(Yb0.25Y0.25Lu0.25Er0.25)2Si2O7相比热膨胀系数、热导率和弹性模量分别降低了5.59%、15.51%和18.74%;与(Yb0.25Y0.25Lu0.25Er0.25)2Si2O7相比(Yb0.2Y0.2Lu0.2Er0.2Ho0.2)2Si2O7的热膨胀系数升高了14.24%,热导率和弹性模量下降了26.35%和24.78%。这表明添加了Ho元素的(Yb0.2Y0.2Lu0.2Er0.2Ho0.2)2Si2O7热导率下降最大,热膨胀系数增加后与基底CMC的热膨胀系数更为接近。在1200 ℃和1300 ℃保温10 h、30 h、50 h后,Yb2Si2O7、(Yb0.25Y0.25Lu0.25Er0.25)2Si2O7、(Yb0.2Y0.2Lu0.2Er0.2Sc0.2)2Si2O7和(Yb0.2Y0.2Lu0.2Er0.2Ho0.2)2Si2O7均表现出良好的高温相稳定性,其热膨胀系数下降,但依然与基底CMC的热膨胀系数相接近,它们的弹性模量随着保温时长的增加而增加。

    Abstract:

    Yb2Si2O7 and high entropy double silicate powders (Yb0.25Y0.25Lu0.25Er0.25)2Si2O7, (Yb0.2Y0.2Lu0.2Er0.2Sc0.2)2Si2O7, and (Yb0.2Y0.2Lu0.2Er0.2Ho0.2)2Si2O7 were prepared through solid-state reaction. The phase composition, thermal expansion coefficient, thermal conductivity, and elastic modulus of their ceramic blocks and insulation treatment were studied. The results show that due to the addition of rare earth elements Y, Lu, and Er, the thermal expansion coefficient and thermal conductivity of high entropy (Yb0.25Y0.25Lu0.25Er0.25)2Si2O7 are similar to those of Yb2Si2O7, but the elastic modulus decreases the least, at 10.28%; Due to the addition of Scelements, high entropy (Yb0.2Y0.2Lu0.2Er0.2Sc0.2)2Si2O7 has lower thermal expansion coefficient and thermal conductivity compared to (Yb0.25Y0.25Lu0.25Er0.25)2Si2O7, and the elastic modulus is reduced by 18.74%; Compared with (Yb0.25Y0.25Lu0.25Er0.25)2Si2O7, the high entropy (Yb0.2Y0.2Lu0.2Er0.2Ho0.2)2Si2O7 doped with Ho element has a higher thermal expansion coefficient and lower thermal conductivity, but its elastic modulus decreases the most, reaching 24.78%. After insulation at 1200 ℃ and 1300 ℃ for 10, 30, and 50 hours, Yb2Si2O7, (Yb0.25Y0.25Lu0.25Er0.25)2Si2O7, (Yb0.2Y0.2Lu0.2Er0.2Sc0.2)2Si2O7, and (Yb0.2Y0.2Lu0.2Er0.2Ho0.2)2Si2O7 all exhibited good high-temperature stability, and their elastic modulus increased with the increase of insulation time, while their thermal expansion coefficient gradually decreased. After high entropy double silicate insulation treatment, it still exhibits good high-temperature phase stability and has a similar coefficient of thermal expansion to the substrate, indicating that the prepared high entropy double silicate is suitable for thermal environment barrier coating materials of high thrust weight ratio aviation engines.

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丁坤英.双硅酸盐高熵材料热稳定性研究[J].稀有金属材料与工程,2024,53(10):2968~2974.[Ding Kunying. Study on Thermal Stability of Bisilicate High Entropy Materials[J]. Rare Metal Materials and Engineering,2024,53(10):2968~2974.]
DOI:10.12442/j. issn.1002-185X.20230680

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  • 收稿日期:2023-10-30
  • 最后修改日期:2023-12-15
  • 录用日期:2024-01-05
  • 在线发布日期: 2024-10-17
  • 出版日期: 2024-09-27