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首页> 外文期刊>Journal of the European Ceramic Society >Rheological properties of montmorillonitic clay suspensions: Effect of firing and interlayer cations
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Rheological properties of montmorillonitic clay suspensions: Effect of firing and interlayer cations

机译:蒙脱土悬浮液的流变特性:烧成和层间阳离子的影响

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摘要

The effect of a prior firing of three montmorillonite clays, exhibiting different nature of interlayer cations, on the rheological behaviour of related aqueous suspensions (5 and 10 mass% of solid content) was examined. Calcinations were performed at 150 °C, 250 °C, 300 °C or 450 °C for 30 min. The rheological properties were characterized at 25 °C in the flow mode using the Herschel-Bulkley model. The alkaline interlayer cation (Na) tended to increase the yield stress of montmorillonite suspensions in comparison with earth-alkaline ones (Ca, Mg). As expected, increasing solid content led to increasing yield stress. For calcinations until 200 °C, the relevant suspensions exhibited an increasing yield stress due to a gel-like behaviour in relation with a card-house-like structure. Furthermore, calcination above 300 °C favoured the decrease of the corresponding yield stress. This behaviour seemed to be related to the modification of the surface properties of the clay platelets, more precisely to the beginning of clay dehydroxylation.
机译:考察了预先焙烧的三种表现出层间阳离子不同性质的蒙脱土对相关水性悬浮液(固体含量为5和10质量%)的流变行为的影响。在150℃,250℃,300℃或450℃下煅烧30分钟。使用Herschel-Bulkley模型在25°C的流动模式下表征流变特性。与碱土金属(Ca,Mg)相比,碱性层间阳离子(Na)倾向于增加蒙脱土悬浮液的屈服应力。不出所料,固体含量的增加导致屈服应力的增加。对于直到200°C的煅烧,由于与卡片屋状结构有关的凝胶状行为,相关的悬浮液表现出增加的屈服应力。此外,高于300°C的煅烧有利于降低相应的屈服应力。这种行为似乎与粘土薄片表面性质的改变有关,更确切地说与粘土脱羟基作用的开始有关。

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