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Measurement of Bubble Characteristics in a Molten Iron Bath at 1600℃ Using an Electroresistivity Probe

机译:使用电阻率探针在1600℃的铁水浴中测量气泡特性

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A two-needle, electroresistivity probe was developed to measure bubble characteristics such as gas holdup, bubble frequency, and bubble rising velocity in a molten iron bath at 1600℃. The probe's electrode was made of a 0.5-mm platinum wire coated with ZrO_2 cement and an outer coat of alumina as insulator. The life of this probe at 1600℃ was 15 to 20 minutes, making it possible to systematically measure bubble characteristics. The measured values of the bubble characteristics were compared with their respective empirical correlations derived from cold model experiments. Good agreement between the measured values and the empirical correlations was seen for each bubble characteristic. This electroresistivity probe allows us to measure bubble characteristics in actual metallurgical reactors with gas injection at high bath temperatures.
机译:开发了一种两针电阻率探针,用于测量气泡特征,例如在1600℃的铁水浴中的气体滞留率,气泡频率和气泡上升速度。探针的电极由0.5毫米的铂丝制成,涂有ZrO_2水泥和氧化铝外层作为绝缘体。该探针在1600℃下的寿命为15至20分钟,因此可以系统地测量气泡特性。将气泡特性的测量值与各自从冷模型实验得出的经验相关性进行比较。对于每个气泡特征,可以看到测量值与经验相关性之间的良好一致性。这种电阻率探针使我们能够在高浴温下注入气体来测量实际冶金反应器中的气泡特性。

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