研究了高岭石添加量对滑铸法制备氧化铝陶瓷体性能的影响

S. A. Salman, Sheahab A Z Al-jubouri, Haydar A Al-obaidy
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摘要

本文通过实验和计算机计算研究了与铝粉生长和相形成有关的物理现象。采用滑移铸造技术对试样进行了成形。这些样品在不同的温度(500、1100和1600)℃下烧制。制备了不同掺量的氧化铝样品,研究了其不同的物理力学性能。浇注前,制备固体含量为(60 wt. %)、掺杂率为不同百分比的浆料。这里使用的掺杂剂是添加(0,5,10和15%)百分比的高岭石,其中高岭石是许多具有可塑性和安全优势的原材料之一。采用羧甲基纤维素钠(Na-CMC)溶液作为分散剂。滑块的稳定性显然取决于添加分散剂的百分比,最佳比例为每克固体(0.33 ml)。高岭石含量的增加导致孔隙率和吸水率的降低,但导致密度、导热系数和所有力学性能的增加。
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Studying the Effects of Kaolinite Additions on the Properties of Ceramic Bodies Prepared from Alumina Powder by Slip Casting Technique
In this work, physical phenomena related to the growth and phase formation of aluminapowder are investigated by experiments and computer calculations. The specimens were formedby slip casting technique. These specimens were fired at various temperatures (500, 1100 and1600) °C. Alumina samples with different dopant percentages were prepared to study theirvarious physical and mechanical properties. Before casting, slurries with (60 wt. %) solid contentand different percentages of dopant additions were prepared. The dopant used here is kaolinitewith (0, 5, 10 and 15) percentage addition, where kaolinite is one of many types of raw materialsthat have plasticity and advantage of securing. Sodium carboxymethylcellulose (Na-CMC)solution was used as dispersant. The stability of the slip clearly depends on the percentage ofdispersant added and the best ratio is found to be (0.33 ml) for each gram of solids. Kaolinitepercentage increase leads to decreasing the porosity and water absorption but it leads to increasedensity, thermal conductivity and all the mechanical properties.
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