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Zirconia reinforcement of cement free Alumina refractory castables by two routes

机译:氧化锆加强水泥免费氧化铝耐火材料,两条路线

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The cement free castables (CFC) and the ultra low cement castables (ULCC) differ from the conventional castables not only in the fact that alumina cement content and that the water required for elaboration is considerable lower, but also that they exhibit outstanding physical-chemical properties and mechanical properties. In this work we compared two routes of introducing zirconia to cement free alumina castables with a zirconia free castables, one by adding electrofused zirconia grains and the second by incorporating reused grains from electrofused AZS block formerly used as floor of glass melting furnaces. Comparable microstructures and textural properties were achieved, this fact permitted to evaluate the zirconia influence in the mechanical and fracture properties of the studied materials. There was a direct correlation with the zirconia content of both the mechanical properties at room temperature and at high temperatures (1350°C). Finally, while at room temperature the incorporation of AZS grains proved to be more efficient to reinforce electrofused zirconia proved to be the most effective additive for reinforcement of castables studied if they were to be used at elevated temperatures.
机译:水泥自由浇注料(CFC)和超低水泥浇注料(ULCC)从传统的浇注料不同,不仅在一个事实,即氧化铝水泥含量和用于阐述所要求的水是相当大的降低,而且还使它们表现出优异的物理 - 化学性能和机械性能。在这项工作中,我们,通过掺入来自以前用作玻璃熔炉的电铸地板AZS块重复使用谷物添加电熔氧化锆颗粒,而第二个相比较引入的氧化锆与水泥的不含氧化铝的浇注料与氧化锆自由浇注料的两条路由。可比的微结构特性和结构特性被实现的,这一事实允许评估在所研究的材料的机械和断裂性能的氧化锆的影响。有在室温下两者的机械特性的氧化锆的含量,并在高温(1350℃)的直接相关性。最后,虽然在室温下AZS晶粒的掺入被证明是更有效的,以加强电熔的氧化锆证明是对于所研究浇注料的加强的最有效的添加剂,如果他们在升高的温度下使用。

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