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The effect of SnO2 additive on the densification, microstructure and mechanical properties of MgAl2O4-CaAl12O19 composites

机译:SnO2添加剂对MgAl2O4-CaAL12O19复合材料致密化,微观结构和力学性能的影响

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摘要

The self-toughening property of platelet calcium hexaluminate (CaAl12O19, or CA(6)) grains causes great interest in the in-situ CA(6) in engineering ceramics. MgAl2O4-CaAl12O19 (MA-CA(6)) composites with SnO2 additive by solid-state reaction sintering at 1200-1600 degrees C were prepared. The physical and mechanical properties, microstructure, and phase composition were investigated. The results showed that the addition of SnO2 could accelerate the formation of MA and CA(6) due to the appearance of the (Mg1-2xSnx)Al2O4 solid solution in the composites. The composites, with the addition of 1 wt% SnO2 and sintered at 1600 degrees C, presented denser microstructures, and accordingly, the flexural strength reached a maximum of 179 MPa. This was a result of the close bonding between MA and CA(6) grains. However, increasing the SnO2 content further resulted in a decrease in the densification of the composites due to the bridging effect of plate-shaped CA(6) and the lamellar growth of CA(6). Therefore, adding the appropriate amount of SnO2 is important in improving the properties of MA-CA(6) composites.
机译:血小板氧化钙的自增韧性能(CaAL12O19,或Ca(6))颗粒对工程陶瓷的原位CA(6)感兴趣。制备MgAl2O4-caA112O19(MA-Ca(6))通过固态反应烧结在1200-1600℃下的SnO2添加剂复合材料。研究了物理和机械性能,微观结构和相组合物。结果表明,由于在复合材料中的(Mg1-2XSNX)Al 2 O 4固溶体的外观,添加SnO 2可以加速Ma和Ca(6)的形成。复合材料,加入1wt%snO2并在1600℃下烧结,呈现更密集的微结构,因此,弯曲强度最多达到179mPa。这是马和Ca(6)颗粒之间紧密粘合的结果。然而,由于板状Ca(6)的桥接效果和Ca(6)的层状生长,增加了SnO2含量进一步导致复合材料的致密化减少。因此,添加适量的SnO2在改善Ma-Ca(6)复合材料的性质方面是重要的。

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