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Magnesium Aluminate Spinel Ceramics Containing Aluminum Titanate for Refractory Applications

机译:含有铝钛酸铝的铝铝酸铝晶晶陶瓷,用于耐火材料应用

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摘要

The thermal shock resistance of alumina-rich magnesium aluminate spinel refractory ceramics with aluminum titanate as second phase was investigated. First, suitable thermal conditions for the formation of aluminum titanate from corundum and rutile were determined. Ground pre-synthesized aluminum titanate was added to the spinel powder. According to another route, alumina and titania powder were mixed with the spinel raw material in order to form the aluminum titanate in situ during sintering. Test bars were prepared by means of slip casting and sintered at 1650 °C. The bending strength of both types of as-sintered samples with aluminum titanate was significantly lower in comparison with pure spinel ceramic, but their thermal shock resistance was improved. When the test bars were quenched five times from 950 or 1150 °C, the retained strength of the materials with aluminum titanate was higher than that of the pure spinel samples.
机译:研究了氧化铝镁铝酸镁铜耐火陶瓷与铝酸铝作为第二相的热抗冲击性。 首先,测定用于从刚玉和金红石形成铝酸铝的合适的热条件。 将研磨预合成的铝酸铝加入尖晶石粉末中。 根据另一种途径,氧化铝和二氧化钛粉末与尖晶石原料混合,以在烧结期间以原位原位形成铝酸铝。 通过滑动铸件制备测试棒并在1650℃下烧结。 与纯尖晶石陶瓷相比,钛酸铝铝酸铝两种类型的滴定样品的弯曲强度显着降低,但其热抗冲击性得到改善。 当测试条从950或1150℃淬火五次时,用钛酸铝的材料的保留强度高于纯尖晶石样品的保留强度。

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