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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Thermodynamic simulation of the effect of slag chemistry on the corrosion behavior of alumina-chromia refractory
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Thermodynamic simulation of the effect of slag chemistry on the corrosion behavior of alumina-chromia refractory

机译:炉渣化学成分对氧化铝-氧化铬耐火材料腐蚀行为影响的热力学模拟

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摘要

The corrosion behavior of alumina-chromia refractory against two kinds of industrial slags (coal slag and iron smelting slag) at 1550A degrees C was investigated via thermodynamic simulations. In the proposed simulation model, the initial slag first attacks the matrix and surface aggregates and subsequently attacks the inner aggregates. The simulation results indicate that the slag chemistry strongly affects the phase formation and corrosion behavior of the refractory brick. Greater amounts of alumina were dissolved and spinel solid phases formed when the brick interacted with iron smelting slag. These phenomena, as well as the calculated lower viscosity, may lead to much deeper penetration than that exhibited by coal slag and to more severe corrosion compared to that induced by coal slag. The thermodynamic calculations well match the experimental observations, demonstrating the efficiency of the proposed simulation model for evaluating the corrosion behavior of alumina-chromia refractory.
机译:通过热力学模拟研究了氧化铝-氧化铬耐火材料对两种工业炉渣(煤渣和铁冶炼炉渣)在1550A的腐蚀行为。在提出的模拟模型中,初始矿渣首先攻击基质和表面聚集体,然后攻击内部聚集体。模拟结果表明,炉渣的化学性质严重影响了耐火砖的相形成和腐蚀行为。当砖与铁冶炼渣相互作用时,大量的氧化铝溶解并形成尖晶石固相。这些现象以及计算出的较低粘度可能导致比煤渣表现出的渗透更深,并且与煤渣引起的腐蚀相比,腐蚀更加严重。热力学计算与实验结果非常吻合,证明了所提出的模拟模型评估氧化铝-氧化铬耐火材料腐蚀行为的效率。

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