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首页> 外文期刊>CERAMICS INTERNATIONAL >Preparation and characterization of porous MgO-Al2O3 refractory aggregates using an in-situ decomposition pore-forming technique
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Preparation and characterization of porous MgO-Al2O3 refractory aggregates using an in-situ decomposition pore-forming technique

机译:MgO-Al2O3多孔耐火骨料的原位分解成孔技术制备与表征

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摘要

The porous MgO-Al2O3 refractory aggregates containing 30-92 wt% Al2O3 were prepared via an in-situ decomposition pore-forming route using magnesite and AI(OH)(3) as starting raw materials. The phase compositions, pore characteristics and mechanical strengths were characterised by means of X-ray diffractometry (XRD), scanning electron microscopy (SEM), and mercury porosimetry measurements, etc. The results showed that the Al2O3 contents in the porous refractory aggregates strongly affected the spinel formation, change of the neck bonds between the particles, pore structure (porosity, average pore size and pore size distributions), and then affected the strengths. The porous MgO-Al2O3 refractory aggregates of 62-72 wt% Al2O3 showed the best combination of high apparent porosities of 42.1-44.2%, high compressive strengths of 51.1-52.0 MPa, high flexural strengths of 17.7-18.6 MPa and small average pore size of 10.81-12.07 mu m. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:以菱镁矿和Al(OH)(3)为起始原料,通过原位分解成孔途径制备了含30-92 wt%Al2O3的多孔MgO-Al2O3耐火骨料。通过X射线衍射(XRD),扫描电子显微镜(SEM)和水银孔隙率法等方法表征了相组成,孔隙特征和机械强度。结果表明,多孔耐火骨料中的Al2O3含量受到强烈影响尖晶石的形成,颗粒之间颈键的变化,孔隙结构(孔隙度,平均孔径和孔径分布),然后影响强度。 62-72 wt%Al2O3的多孔MgO-Al2O3耐火骨料表现出以下最佳组合:高表观孔隙率42.1-44.2%,高压缩强度51.1-52.0 MPa,高弯曲强度17.7-18.6 MPa和平均孔径小面积10.81-12.07微米(C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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