Driving forces of slag bath flow in ESR process have been analyzed and mathematical models in ESR system reviewed and evaluated.
对电渣重熔过程中渣池运动的驱动力进行了分析,并对电渣重熔体系的数学模型进行了回顾和评价。
Furthermore, the influences of slag composition and electrical parameters on the heat generation distribution in slag bath are discussed.
在上述基础上,考察了渣成分及电参数对渣池发热分布的影响。
Electroslag remelting's consumable electrode current is determined by the distance between electrode and slag bath which is determined by the rotate speed of motors driven by electrode.
电渣重熔的自耗电极电流大小取决于电极与渣池的距离,而该距离大小又取决于电极驱动电机的转速。
A cladding which is to a large extent resistant to dew-point corrosion is also envisaged for the lower area of the gasifier (REACTOR) pressure vessel in the zone affected by the Slag Bath.
基本针对露点腐蚀的复合层还面临着气化炉(反应器)受渣池影响的较低区域。
The slag temperature and morphology were measured and observed. The equilibrium between the slag and melt and the reaction of oxygen jet with the bath were analyzed.
检测了炉渣的流动温度和岩相结构,分析了渣-钢之间化学反应的平衡状况和氧射流对熔池的作用。
In order to keep the normal bath temperature and slag forming condition, the charge of pig iron should not be exceeded 10 % on middle and small converter.
中小型转炉内生铁块的加入量不应超过10 %,使转炉吹炼过程中保持正常的熔池升温和成渣状况。
The slag pool and the metallic bath are the most important two regions in Electroslag Casting(ESC).
渣池和金属熔池是电渣熔铸过程中两个最重要的区域。
This paper describes the fluid-dynamic phenomena of the slag and matte in bath of an electro-ore-thermal smelter for copper and nickel smelting.
讨论了铜、镍熔炼矿热电炉熔池内渣与铳的流体动力现象。
This paper describes the fluid-dynamic phenomena of the slag and matte in bath of an electro-ore-thermal smelter for copper and nickel smelting.
讨论了铜、镍熔炼矿热电炉熔池内渣与铳的流体动力现象。
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