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Densification behaviour and microstructural development in undoped yttria prepared by flash-sintering

机译:闪蒸制备未掺杂氧化钇的致密化行为和微观结构发展

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摘要

Conventional sintering of undoped Y_2O_3 requires temperatures above 1400 ℃ for a few hours. We show that it can be sintered nearly instantaneously to nearly full density at furnace temperature of 1133 ℃ under a DC applied field of 500 V/cm. At 1000 V/cm sintering occurs at 985 ℃. The FLASH event, when sintering occurs abruptly, is preceded by gradually accelerated field-assisted sintering (FAST). This hybrid behaviour differs from earlier work on yttria-stabilized zirconia where all shrinkage occurred in the flash mode. The microstructure of flash-sintered specimens indicated that densification was accompanied by rapid grain growth. The single-phase nature of flash-sintered Y_2O_3 was confirmed by high-resolution transmission electron microscopy. The non-linear rise in conductivity accompanying the flash led to Joule heating. It is postulated that densification and grain growth were enhanced by accelerated solid-state diffusion, resulting from both Joule heating and the generation of defects under the applied field.
机译:未掺杂的Y_2O_3的常规烧结需要在1400℃以上的温度下进行几个小时。我们表明,在500 V / cm的直流施加电场下,可以在1133℃的炉温下将其瞬间烧结至几乎全密度。在1000 V / cm的烧结温度为985℃。当突然发生烧结时,FLASH事件之前是逐渐加速的场辅助烧结(FAST)。这种混合行为与之前在氧化钇稳定的氧化锆上的工作有所不同,在氧化钇稳定的氧化锆上,所有的收缩均以闪光模式发生。闪光烧结试样的微观结构表明,致密化伴随着晶粒的快速生长。通过高分辨透射电子显微镜证实了Y_2O_3的快速烧结。伴随闪光的电导率的非线性上升导致焦耳热。可以推测,由于焦耳加热和在外加电场下缺陷的产生,固态扩散加快,致密化和晶粒长大。

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