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IMPACT OF THE HEAT FLUX ON SOLIDIFICATION OF CRYOLITE BASED BATH

机译:热通量对粘晶型浴凝固的影响

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The solidification of the electrolytic bath in Hall-Heroult cells includes the formation of a sideledge, crust as well as temporary freeze layers around alumina agglomerates, new anodes or any cold object inserted into the bath. The structure and the chemical composition of solidified phases depend on the cooling heat flux (or cooling rate), which has a huge impact on the formation of crystals, amorphous phases and pores and on the extent of ion migration. The structure and chemical composition determine the heat loss through the side ledge, and the duration of the existence of a frozen bath around alumina agglomerates or new anodes. The authors of this paper created frozen bath samples under different heat flux conditions in well controlled laboratory environment in order to study the variation of the chemical composition and structure with the cooling rate. The results of this study are presented in this article.
机译:在Hall-Heroult细胞中的电解浴的凝固包括形成侧面的结节,地壳以及氧化铝附聚物,新阳极或插入浴中的任何冷物体的临时冻结层。固化相的结构和化学成分取决于冷却热通量(或冷却速率),其对形成晶体,无定形阶段和孔的形成以及离子迁移的程度具有巨大影响。结构和化学成分通过侧壁的热损失确定了通过侧壁的热量损失,以及在氧化铝附聚物或新阳极周围的冷冻浴的持续时间。本文的作者在良好控制的实验室环境中在不同的热通量条件下创造了冷冻浴样品,以研究化学成分和结构的变化,以冷却速度。本文提出了本研究的结果。

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