快凝堇青石-莫来石耐火材料热处理过程中的相发展☆

N.E. Hipedinger , A.N. Scian , E.F. Aglietti
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引用次数: 3

摘要

堇青石基材料因其良好的热机械性能和抗热震性能而广泛应用于高温领域。它们一般用于烧制陶瓷制品的窑具(架子、托架、承重板)。由于其低膨胀系数和介电性能,堇青石也被用于高级陶瓷,催化剂支撑汽车,工业废气净化和经受突然温度变化的部件。堇青石的低固有强度可以通过莫来石的存在得到补偿,形成堇青石-莫来石的复合材料,使其使用温度稍微高一些,但代价是热膨胀系数略有增加。在这项工作中,由氧化镁、煅烧氧化铝、硅灰和磷酸单铝溶液的混合物制备了堇青石-莫来石前驱体,该前驱体在室温下(~ 20分钟)产生快速凝固,然后通过煅烧生成堇青石-莫来石。用x射线衍射、差热分析和热重法研究了室温至1350℃的矿物相演化。在整个热处理过程中,还提出了化学反应的可能顺序。在该前驱体中加入耐火骨料可获得快速凝结的混凝土,适用于单个块的形成或在中等高温下的修复服务。还包括对其主要属性的摘要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase Development During Thermal Treatment of a Fast-setting Cordierite-mullite Refractory

Cordierite based materials are widely used in high temperature applications due to their good thermo-mechanical properties and thermal shock resistance. They are generally employed in the kiln furniture (shelves, brackets, bearing plates) for firing ceramic pieces. Because of its low expansion coefficient and dielectric properties, cordierite is also used in advanced ceramics, catalyst supports automotive, industrial waste gas purification and parts subjected to sudden temperature changes. The low intrinsic strength of the cordierite may be compensated by the presence of mullite, forming a composite material of cordierite-mullite, extending its use to somewhat higher temperatures, at the expense of a slight increase in the thermal expansion coefficient. In this work a cordierite-mullite precursor was prepared from a mixture of magnesium oxide, calcined alumina, silica fume and monoaluminum phosphate solution that produces fast setting at room temperature (∼20 minutes) and then, by calcination, cordierite-mullite is generated. The evolution of the mineralogical phases was studied from room temperature to 1350 °C by X-ray diffraction, differential thermal analysis and thermogravimetry. A possible sequence of chemicals reactions throughout the heat treatment is also proposed. Adding refractory aggregates to this precursor leads to obtaining a fast-setting concrete, suitable for the formation of individual pieces or repair service at moderately high temperatures. A summary of its main properties is also included.

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