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A novel method for the fabrication of porous calcium hexaluminate (CA(6)) ceramics using pre-fired CaO/Al2O3 pellets as calcia source

机译:用预烧制的CaO / Al2O3颗粒制备多孔六丙氨酸钙(Ca(6))陶瓷的新方法作为钙烃源

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摘要

Herein, porous calcium hexaluminate ceramics that contain pores exhibiting multiple morphologies were fabricated via in situ reaction sintering using alpha-Al2O3 powders and pre-fired CaO/Al2O3 pellets. The results indicated that the composition of the pre-fired CaO/Al2O3 pellets significantly affected the pore morphology, reaction-diffusion mechanisms, sintering behaviour and properties of the porous CA(6) ceramics. For the specimens containing low CaO/Al2O3-ratio (0.37) pellets, the main reaction occurred by solid state diffusion, i.e. ion diffusion through the solid reactant phase, which resulted in a slow process and low CA(6) formation rate at an elevated sintering temperature. With higher CaO/Al2O3-ratio (0.57) pellets, large-sized pores were observed because of transient liquid phase diffusion during the sintering process. The transient liquid phase diffusion effect increased the porosity of the porous ceramics and promoted the formation of a large number of plate-like CA(6) grains in the walls of the pores, enhancing their mechanical properties and high-temperature performance. The porous CA(6) ceramics containing high CaO/Al2O3-ratio (0.57) pellets sintered at 1700 degrees C exhibited high open porosity (55.88%), low thermal conductivity and excellent high-temperature performance.
机译:这里,通过使用α-Al2O3粉末原位反应烧结制造含有发出多种形态的孔的多孔钙六铝酸钙陶瓷,并预先烧制CaO / Al2O3粒料。结果表明,预烧予的CaO / Al2O3颗粒的组成显着影响了多孔Ca(6)陶瓷的孔形态,反应扩散机制,烧结行为和性质。对于含有低CaO / Al 2 O 3比(0.37)粒料的试样,通过固态扩散发生的主要反应,即通过固体反应物相的离子扩散,导致升高的过程和低Ca(6)形成速率烧结温度。具有较高的CaO / Al 2 O 3比(0.57)颗粒,由于烧结过程中的瞬态液相扩散,观察到大尺寸的孔隙。瞬态液相扩散效果增加了多孔陶瓷的孔隙率,并促进了在孔的壁中形成了大量的板状Ca(6)颗粒,增强了它们的机械性能和高温性能。含有高CaO / Al2O3比(0.57)颗粒的多孔Ca(6)陶瓷在1700℃下烧结,表现出高开孔(55.88%),导热性低,高温性能。

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