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The Manufacturing of Lightweight Refractories by Direct Freeze Foaming Technique

机译:直接冷冻发泡技术生产轻质耐火材料

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摘要

Refractories are a key component for cost effective and energetic sustainable processes. Depending on the operation temperature of industrial furnace thermal characteristics of porous refractory linings have to be adjusted. There are a lot of possible porosity adjusting methods, e.g. placeholder, replica and gas injection/development approaches. Now, the freeze-foam-ing as direct foaming technique shall be introduced as an environmentally friendly way to refractories. In this presented work an aqueous ceramic mullite suspension is foamed within minutes just by the reduction of the ambient pressure in a freeze drying device. The foam structure suddenly freezes when the suspension temperature, related to the vacuum pressure, reaches the liquid-solid equilibrium line (p,T-diagram of water). The porous structure is then dried by sublimating the frozen water. The resulting bricklike lightweight refractories exhibit a high amount of open porosity and dense struts. Just 5-10 mass-% organic additives, required for a stable foaming, minimize the effect of crack formation during the sintering step and provide an environmentally friendly processing route to the final product. The pore morphology is being determined by X-ray computed tomographic images and mercury porosimetry. Measurements of the thermal conductivity, compressive strength and creep have been carried out to evaluate the freeze-foaming process as a promising approach for manufacturing ref ractories.
机译:耐火材料是成本有效且充满活力的可持续过程的关键组成部分。根据工业炉的操作温度,必须调节多孔耐火衬里的热特性。有许多可能的孔隙率调整方法,例如占位符,副本和气体注入/开发方法。现在,将冻结发泡作为直接发泡技术作为一种环保的耐火材料方式引入。在该提出的工作中,仅通过降低冷冻干燥装置中的环境压力就可以在几分钟内使水性陶瓷莫来石悬浮液发泡。当悬浮温度(与真空压力有关)达到液固平衡线(p,T-水)时,泡沫结构突然冻结。然后通过升华冷冻水来干燥多孔结构。所得的砖状轻质耐火材料表现出大量的开孔率和致密的支杆。稳定发泡只需要5-10质量%的有机添加剂,就可以最大程度地减少烧结步骤中裂纹形成的影响,并为最终产品提供环保的加工路线。通过X射线计算机断层扫描图像和水银孔隙率法确定孔的形态。已经进行了热导率,抗压强度和蠕变的测量,以评估冷冻发泡工艺作为制造参考材料的有希望的方法。

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