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首页> 外文期刊>CERAMICS INTERNATIONAL >Effects of the initial CaO-Al2O3 ratio on the microstructure development and mechanical properties of porous calcium hexaluminate
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Effects of the initial CaO-Al2O3 ratio on the microstructure development and mechanical properties of porous calcium hexaluminate

机译:初始CaO-Al2O3比对多孔钙微观结构开发和机械性能的影响

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摘要

This paper addresses an evaluation of the effects of variation in the CaCO3-Al2O3 ratio on the physical properties of in situ calcium hexaluminate (CaAl12O19 or CA(6)) porous structures during sintering. Combinations of calcined alumina (alpha-Al2O3) and different amounts of precipitated CaCO3 particles were thermally treated between 500 degrees C and 1500 degrees C. Their physical properties (Total Porosity, Flexural Strength, Flexural Elastic Modulus and Thermal Linear Variation), microstructure (Scanning Electron Microscopy), and phase composition (X-Ray Diffraction) were assessed. For thermal treatments conducted at 500-1100 degrees C, the addition of higher contents of CaCO3 increased total porosity, strength and rigidity levels due to the simultaneous generation of pores (from CaCO3 decomposition) and low-melting-point compounds (such as C(12)A(7)) that helped the sintering of particles. A competition between the maintenance of pores resulting from the expansive formation of CA(6) and the densification of the structure was observed at 1300-1500 degrees C. Compositions whose CaO fraction was equal to or larger than the stoichiometric content for the production of CA(6) showed the highest porosity levels (up to 58% after sintering at 1500 degrees C, for 3 h) and lowest densification rates.
机译:本文解决了在烧结期间原位六丙氨酸钙(CaAL12O19或Ca(6))多孔结构的CaCO 3-Al2O3比率对含有原位钙的物理性质的影响的评价。煅烧氧化铝(α-Al2O3)和不同量的沉淀的CaCO 3颗粒的组合在500℃和1500℃之间进行热处理它们的物理性质(总孔隙率,弯曲强度,弯曲弹性模量和热线性变化),微观结构(扫描评估电子显微镜)和相组合物(X射线衍射)。对于在500-1100摄氏度下进行的热处理,由于同时产生孔(来自CaCO 3分解)和低熔点化合物(例如C( 12)帮助烧结颗粒的(7))。在1300-1500℃的Ca(6)的膨胀形成和结构的致密化产生的孔之间的竞争中,其CaO分数等于或大于化学计量的CA的化学计量含量(6)显示最高的孔隙率水平(在1500摄氏度下烧结后高达58%)和最低致密化速率。

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