焦绿石
萤石
材料科学
磷灰石
腐蚀
微观结构
离子半径
陶瓷
化学工程
硅酸盐
硅灰石
矿物学
相(物质)
离子
冶金
地质学
化学
有机化学
原材料
工程类
作者
Ming Zhou,Han Zhang,Guojie Yang,Ying Chen,Xiao Shan,Hantao Li,Lirong Luo,Xiaofeng Zhao
标识
DOI:10.1016/j.jeurceramsoc.2024.01.014
摘要
In this study, two high-entropy ceramics, namely (La0.2Nd0.2Sm0.2Eu0.2Gd0.2)2Zr2O7 (LaHZ) and (Nd0.2Sm0.2Eu0.2Gd0.2Yb0.2)2Zr2O7 (YbHZ), were prepared and investigated, in comparison to La2Zr2O7 (LZ). This investigation focused on their interactions with calcium-magnesium-alumina-silicate (CMAS), revealing noteworthy findings. High entropy samples particularly YbHZ exhibit significantly reduced infiltration depths compared to LZ. After CMAS corrosion, the reaction zones of LaHZ and LZ show a similar microstructure characterized by the presence of apatite and fluorite embedded in CMAS residue. In contrast, YbHZ forms a dense and nanoscale dual-phase zirconia (fluorite + pyrochlore) layer, with no visible CMAS residue. The different corrosion behavior is associated with the competition between fluorite and apatite phases, which is strongly related to the ionic radius of RE3+. Apart from the apatite, the formation of a dense and continuous fluorite Ca&RE-ZrO2 layer could also provide excellent CMAS resistance. These findings provide a viable strategy for designing CMAS-resistant materials.
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