首页> 外文期刊>Journal of Ceramic Processing Research. (Text in English) >Reinforcing of extruded ceramic Raschig rings by dispersive particles: the effects of alumina and zirconium silicate on the reliability of a ceramic body
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Reinforcing of extruded ceramic Raschig rings by dispersive particles: the effects of alumina and zirconium silicate on the reliability of a ceramic body

机译:分散颗粒增强挤压陶瓷拉西环的作用:氧化铝和硅酸锆对陶瓷体可靠性的影响

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摘要

Most packed beds contain heterogeneous microstructures with relatively big defects and pores, causing a large reduction in compressive strength and reliability. Recently, the need for fabricating reliable ceramic Raschig rings with high strength has increased due to their applications in processes where a high diametrical stress is applied. In manufacturing these materials, the strength and reliability arc basically affected by the mixing ratio of reinforcing materials such as alumina and zirconium silicate. However, the firing process should be controlled to achieve the desired properties. Therefore, the objective of this investigation was to evaluate the firing behavior, technological properties and microstructure of a typical extruded ceramic Raschig ring. The technological properties of rings prepared with different amounts of alumina and zirconium silicate sintered at 1150,1200 and 1250 °C were evaluated by measuring the shrinkage, water absorption, porosity and strength. The reliability of rings was studied by Weibull's statistical theory. The results showed that the addition of 10% alumina or 5% zirconium silicate into the ring composition improves the Weibull modulus considerably. Finally, the optimum particle size of alumina was determined to improve the mechanical characteristics. It was found to be less than 38 μm. The results obtained can be useful in industrial applications.
机译:大多数填充床包含具有相对较大缺陷和孔隙的异质微观结构,从而导致抗压强度和可靠性大大降低。近来,由于其在施加高径向应力的过程中的应用,对制造具有高强度的可靠陶瓷拉西环的需求增加了。在制造这些材料时,强度和可靠性基本上受诸如氧化铝和硅酸锆之类的增强材料的混合比的影响。但是,应控制焙烧过程以获得所需的性能。因此,本研究的目的是评估典型挤压陶瓷Raschig环的烧成行为,工艺性能和微观结构。通过测量收缩率,吸水率,孔隙率和强度,评估了在1150、1200和1250°C下烧结不同数量的氧化铝和硅酸锆制备的环的技术性能。用威布尔的统计理论研究了环的可靠性。结果表明,在环组合物中加入10%的氧化铝或5%的硅酸锆可显着改善威布尔模量。最后,确定氧化铝的最佳粒径以改善机械性能。发现小于38μm。获得的结果可用于工业应用。

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