首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A comparative study on the microstructures and mechanical properties of a dense and a lightweight magnesia refractories
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A comparative study on the microstructures and mechanical properties of a dense and a lightweight magnesia refractories

机译:密集和轻质镁质耐火材料的微观结构和力学性能的比较研究

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摘要

A new lightweight magnesia refractory for working linings of high-temperature furnaces was prepared by using microporous magnesia aggregates instead of conventional dense magnesia aggregates. The median pore size of the microporous magnesia aggregates was 2.97 mu m, while the apparent porosities of the microporous and dense aggregates were 33.3% and 5.5%, respectively. The phase composition, microstructures, fracture behaviors and strengths at room and high temperature of the lightweight magnesia refractory in comparison with those of the dense one were measured by means of XRD, SEM and three-point bending instrument. After the dense aggregates were replaced by the microporous ones, a better aggregate/matrix interface bonding was observed and the fracture mode changed from intergranular to transgranular fracture, which significantly improved the mechanical properties. Thus, the lightweight magnesia refractories had a lower bulk density of 11.8%, a higher apparent porosity of 56.2% as well as a higher flexural strength at room and high temperature of 48.4% and 160.0% comparing with the dense one, respectively. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过使用微孔氧化镁聚集体代替常规的致密镁质聚集体,制备用于高温熔炉的工作衬里的新的轻质氧化镁耐火材料。微孔氧化镁聚集体的中值孔径为2.97μm,而微孔和致密聚集体的表观孔隙分别为33.3%和5.5%。通过XRD,SEM和三点弯曲仪测量与致密镁质耐火材料的室内组合物,微结构,断裂行为和强度,与致密的镁耐火材料相比。在致密聚集体被微孔组取代之后,观察到更好的聚集体/基质界面粘合,并且裂缝模式从晶间变为跨晶状体骨折,这显着改善了机械性能。因此,轻量级氧化镁耐火材料的较低堆积密度为11.8%,较高的表观孔隙率为56.2%,并且室内弯曲强度较高,高温分别与致密的孔径为48.4%和160.0%,比较。 (c)2019 Elsevier B.v.保留所有权利。

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