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EFFECT OF VACUUM VIBROFORMING ON POROSITY DEVELOPMENT DURING ANODE BAKING

机译:真空成膜对阳极烘烤过程中孔隙度的影响

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The anode porosity and pore development depend on the raw materials and on the production process. The porosity of the baked anode consists of the coke pores and process pores that are created during the anode production steps mixing, forming and baking. Pilot-scale work was carried out in order to determine the effects of five parameters on the resulting porosity in the baked state. Anode samples were produced from a single source petrol coke in a two level, five-factorial experimental design with variable factors pitch content, aggregate size distribution, mixing time, atmospheric pressure vibroforming, and heating rate. Vacuum vibroforming was found to be an effective method for porosity reduction. A fully automatic image analysis method (optical microscopy) was utilized in order to determine the porosity in the baked samples. Reactivity (CO_2 and air) and physical anode properties were also investigated.
机译:阳极孔隙率和孔发展取决于原材料和生产过程。烘烤后的阳极的孔隙度由在阳极生产步骤混合,成型和烘烤过程中产生的焦炭孔和工艺孔组成。为了确定五个参数对烘烤状态下所得孔隙率的影响,进行了中试工作。阳极样品是从单一来源的汽油焦中以两级,五因子的实验设计生产的,该实验设计具有可变因素的沥青含量,聚集体尺寸分布,混合时间,大气压振动成型和加热速率。发现真空振动成型是降低孔隙率的有效方法。为了确定烘烤样品中的孔隙率,使用了全自动图像分析方法(光学显微镜)。还研究了反应性(CO_2和空气)和物理阳极性能。

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