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首页> 外文期刊>CERAMICS INTERNATIONAL >Comparative study of B4C, Mg2B2O5, and ZrB2 powder additions on the mechanical properties, oxidation, and slag corrosion resistance of MgO-C refractories
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Comparative study of B4C, Mg2B2O5, and ZrB2 powder additions on the mechanical properties, oxidation, and slag corrosion resistance of MgO-C refractories

机译:B4C、Mg2B2O5和ZrB2粉体添加量对MgO-C耐火材料力学性能、抗氧化性和抗渣蚀性能的比较研究

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Boron-containing additives are used to improve the oxidation resistance of carbon-containing refractories; however, their effects on the mechanical properties and slag corrosion resistance of the refractories have rarely been studied. In this work, B4C, Mg2B2O5, and ZrB2 powders were incorporated into low-carbon MgO-C refractories to study their effects on the mechanical properties, oxidation resistance, and slag corrosion resistance of the refractories. The relationships between these properties and the microstructure and phase evolution were also studied. The results show that the flexural strengths of the MgO-C refractories at high temperatures are closely related to the apparent porosity and formation of an Mg3B2O6 phase. The oxidation resistances are greatly improved after the introduction of boron-containing additives into the MgO-C refractories in terms of both thermodynamical aspects and the filling of voids and pores. The most effective antioxidant is B4C, followed by the ZrB2 and Mg2B2O5 powders. The mechanisms through which the vanadium-containing slag attacks the MgO-C refractories mainly include the dissolution of magnesia to form melting phases, penetration through pores, and redox reaction with carbon.
机译:采用含硼添加剂提高含碳耐火材料的抗氧化性能;然而,它们对耐火材料的力学性能和抗渣蚀性能的影响却很少得到研究。本工作将B4C、Mg2B2O5和ZrB2粉体掺入低碳MgO-C耐火材料中,研究其对耐火材料力学性能、抗氧化性和耐渣腐蚀性能的影响。还研究了这些性质与微观结构和相演化之间的关系。结果表明:MgO-C耐火材料在高温下的抗弯强度与表观孔隙率和Mg3B2O6相的形成密切相关。在MgO-C耐火材料中引入含硼添加剂后,在热力学方面以及空隙和孔隙的填充方面都大大提高了抗氧化性。最有效的抗氧化剂是 B4C,其次是 ZrB2 和 Mg2B2O5 粉末。含钒渣侵蚀MgO-C耐火材料的机理主要包括氧化镁溶解形成熔融相、穿孔、与碳氧化还原反应等。

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