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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of MgO in the microstructure formation of zirconia mullite composites from sillimanite and zircon
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Effect of MgO in the microstructure formation of zirconia mullite composites from sillimanite and zircon

机译:MgO对硅线石和锆石氧化锆莫来石复合材料微观结构形成的影响

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摘要

The effect of MgO additive on the structural, microstructural and hardness properties of zirconia mullite (MUZ) has been discussed. The MgO additive in MUZ not only stabilizes the cubic zirconia phase but also acts as a sintering aid for the formation of cross-linked mullite grains. The electron micrographs of plasma fused MgO-MUZ shows a uniform arrangement of platelet structure of mullite and dendrite structure of zirconia on mullite surface. The micrograph of plasma sintered composites shows a ladder like structure and a complete cross-linked mullite grains whereas the surface morphology of conventionally sintered composites clearly indicates the presence of small and big grains close packed to each other. Appreciable hardness and higher optical band gap have been observed for plasma fused MgO-MUZ composites. A complete dissociation of sillimanite and zircon has been occurred in plasma fused composites for the complete conversion of MUZ whereas the complete dissociation of sillimanite and zircon has not observed in plasma sintered and conventionally sintered composites. These observations have been realized from the X-ray diffraction and Fourier transform infrared studies.
机译:讨论了MgO添加剂对莫来石氧化锆(MUZ)的结构,微观结构和硬度性能的影响。 MUZ中的MgO添加剂不仅可以稳定立方氧化锆相,而且还可以作为烧结助剂来形成交联的莫来石晶粒。等离子体熔融MgO-MUZ的电子显微照片显示,莫来石表面的莫来石血小板结构和氧化锆的树枝状结构均一排列。等离子烧结复合材料的显微照片显示出梯形结构和完整的交联莫来石晶粒,而常规烧结复合材料的表面形态清楚地表明存在彼此密堆积的小晶粒和大晶粒。对于等离子体熔融的MgO-MUZ复合材料,已经观察到了相当的硬度和更高的光学带隙。在等离子体熔融的复合物中,硅锰石和锆石已发生完全解离,以实现MUZ的完全转化,而在等离子体烧结和常规烧结的复合物中未观察到硅线石和锆石的完全解离。这些观察是通过X射线衍射和傅里叶变换红外研究实现的。

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