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Microstructural evolution of Ti4+-doped calcium hexaaluminate ceramics

机译:Ti4 +掺杂六氧化铝陶瓷的微观结构演化

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摘要

Calcium hexaaluminate (CaAl12O19 or CA(6)) ceramics were fabricated by solid-state reaction sintering of Al2O3 and CaCO3 powder mixtures. The influence of Ti-4(+) doping on microstructural development of CA(6) ceramics was investigated. After doping Ti-4(+), the lengths and widths of the CA(6) grains increased, and the aspect ratios decreased significantly. Al vacancies (V-Al) in mirror planes of CA(6) are created by substituting Ti-4(+) for Al3+. As more V-Al generates in the mirror planes, vacancy concentration varies considerably between mirror planes and spinel blocks. Combined with the fact that the ionic radius of Ti-4(+) is larger than that of Al3+, the crystal growth of CA(6) along c axis is more promoted than that along basal plane. CaTiO3 and residual Al2O3 were observed in Ti-4(+)-doped samples because of the reactions between CaO and TiO2.
机译:通过Al 2 O 3和CaCO3粉末混合物的固态反应烧结制造六氧化钙(CaAL12O19或Ca(6))陶瓷。 研究了Ti-4(+)掺杂对Ca(6)陶瓷微观结构发育的影响。 在掺杂Ti-4(+)后,Ca(6)颗粒的长度和宽度增加,纵横比显着降低。 Ca(6)的镜面平面中的Al空位(V-A1)是通过代替Ti-4(+)来产生的Al3 +。 随着更多V-Al在镜面中产生,空位浓度在镜面平面和尖晶石块之间变化很大。 结合Ti-4(+)的离子半径大于Al3 +的事实,沿C轴的Ca(6)的晶体生长比沿基底平面更高。 由于CaO和TiO 2之间的反应,在Ti-4(+)掺杂样品中观察到CatiO3和残留的Al2O3。

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