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Microstructural development of interface layers between co-sintered alumina and spinel compacts

机译:共烧结氧化铝和尖晶石压块之间界面层的微结构发展

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摘要

Tests were performed to investigate the microstructure of the interface between alumina and spinel materials after high temperature thermal treatment (1500 °C). The first test involved co-sintering of co-pressed alumina and spinel compacts. Microstructures were investigated by SEM, EDS, WDS and EBSD. A microstructurally distinct layer with columnar grains of up to 40 ìm length and 5 ìm width was observed after 16 h at 1500 °C. Growth rate of the columnar spinel grains from parent spinel towards alumina follows parabolic kinetics, controlled by a mixed process of O~(2-) ion diffusion and interface reaction. Diffusion couples of spinel and alumina were investigated. Same columnar spinel grains were observed at the interface which grew into alumina during thermal treatment with the same kinetics as in co-sintering experiments. The shape of the phase boundaries between spinel and alumina can be a further indication of the direction of their growth.
机译:进行了测试,以研究高温热处理(1500°C)后氧化铝和尖晶石材料之间界面的微观结构。第一个测试涉及共压氧化铝和尖晶石压块的共烧结。通过SEM,EDS,WDS和EBSD研究了微结构。在1500°C下放置16 h后,观察到一个微结构不同的层,其柱状晶粒长40微米,宽5微米。柱状尖晶石晶粒从母体尖晶石向氧化铝的生长速率遵循抛物线动力学,受O〜(2-)离子扩散和界面反应的混合过程控制。研究了尖晶石和氧化铝的扩散对。在界面处观察到相同的柱状尖晶石晶粒,该界面在热处理期间以与共烧结实验相同的动力学生长成氧化铝。尖晶石和氧化铝之间的相界形状可以进一步表明它们的生长方向。

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