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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 >Microstructure and oxidation resistant behavior of Er2Si2O7 and Er2Si2O7/LaMgAl11O19 coatings deposited on C-f/SiC composites by APS at 1723 K
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Microstructure and oxidation resistant behavior of Er2Si2O7 and Er2Si2O7/LaMgAl11O19 coatings deposited on C-f/SiC composites by APS at 1723 K

机译:1723 k的APS沉积在C-F / SiC复合材料上C-F / SiC复合材料上的ER2SI2O7和ER2SI2O7 / LamGAL1119涂层的组织和抗氧化性能

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摘要

Er2Si2O7 and Er2Si2O7/LaMgAl11O19 coatings were fabricated on C-f/SiC composites by atmospheric plasma spraying (APS) in order to improve the oxidation resistance of the substrate. Microstructure and oxidation resistant behavior of the coatings were investigated at 1723 K in the thermal shock furnace. The results showed that the as-sprayed coatings were uniformly distributed on the substrate and bonded well with the substrate. The bared substrate has the maximum weight loss of 43.8% after 8 thermal shock cycles with the total heating time of 120 min, while for the samples coated with the Er2Si2O7 and Er2Si2O7/LaMgAl11O19 coatings, the weight losses were only up to 3.73% and 1.88%, respectively. Due to the difference of coefficients of thermal expansion between coatings and substrate, the sintering of Er2Si2O7 layer, the surface oxidation of substrate and the interfacial reactions between the ceramic layers, the through cracks and horizontal cracks appeared in the coatings with the thermal shock cycle increasing, which significantly led to the increasing weight loss for the coated samples. The oxidation protection of Er2Si2O7 and Er2Si2O7/LaMgAl11O19 coatings for C-f/SiC composites at 1723 K is much attractive for the short-term application such as several thermal shock cycles with the total heating time of tens of minutes. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过大气等离子体喷涂(APS)在C-F / SiC复合材料上制造ER2SI2O7和ER2SI2O7 / LAMGAL11O19涂层,以提高基材的抗氧化性。在热冲击炉中,在1723K中研究了涂层的微观结构和抗氧化性能。结果表明,喷涂的涂料均匀地分布在基材上并用基材粘合得很好。在8个热冲击循环后,通过加热时间为120分钟,辐射基材的最大重量损失为43.8%,而对于涂有ER2SI2O7和ER2SI2O7 / LAMGAL11O19涂层的样品,重量损失仅高达3.73%和1.88 %, 分别。由于涂层和衬底之间的热膨胀系数的差异,ER2Si2O7层的烧结,衬底的表面氧化和陶瓷层之间的界面反应,通过抗热冲击循环的涂层出现在涂层中,这显着导致涂覆样品的减重损失。 ER2SI2O7和ER2SI2O7 / LAMGAL1119涂层的氧化保护在1723k时为C-F / SiC复合材料的涂层对于短期施用而言,诸如几个热冲击循环的短期施用具有很大的吸收热量,其加热时间为几十分钟。 (c)2017年Elsevier B.V.保留所有权利。

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