dephosphorizing process
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Cold smelting charge ratio was respectively 20%,25%,28%, by optimizing slag making and oxygen blowing process of dephosphorizing pretreatment period and decarburizing period,oxygen consumption rate increased from 20~30% to 40~50% than conventional process in dephosphorizing pretreatment period and slag charge was controlled at 8~15kg.t-1 in decarburizing pretreatment period.
在冷料比为20%、25%、28%条件下,通过优化脱磷、脱碳期供氧和造渣工艺,脱磷期耗氧比从传统工艺的20%~30%提高到30%~50%,脱碳期渣料加入量控制在8~15 kg.t-1.50炉工业试验结果表明,脱碳期一倒温度达到常规冶炼控制水平,一倒、控制水平明显好于常规冶炼工艺。
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By the research,the dephosphorizing process of low intensity magnetic -high intensity magnetic shacking table separation is selected.
通过工艺研究,最后选择弱磁-强磁-摇床精选的工艺流程,加强矿物细磨是铁矿降磷和提高精矿指标的重要措施。
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Through the research,the dephosphorizing process of low intensity magnetic -high intensity magnetic-shacking table separation was selected.
通过工艺研究,最后选择弱磁—强磁—摇床精选的工艺流程,加强矿物的细磨,是铁矿降磷和提高精矿指标的重要措施。
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Lime consumption, quantity of slag, oxygen consumption and Fe loss are gained by material balance calculation of hot metal dephosphorizing pretreatment and direct steelmaking process in converter.
通过对预直炼法前后期总物料平衡计算,得出总石灰耗量、总渣量、总氧气消耗量和渣中铁吹损量。
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In light of the actual condition in Pangang Group the high efficient compound dephosphorizer is developed by use of the dephosphorizing technology "single slag process" in converter smelting.
结合攀钢实际情况,利用转炉单渣法冶炼脱磷技术,开发应用了高效复合脱磷剂,使平均脱磷率达到89.40%,与转炉预处理双渣法脱磷技术相当,试验炉次的成品w≤0.015%,且未增加冶炼周期,为350km/h高速铁路用钢轨等钢种的稳定生产提供了技术支撑。
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dephosphorizing process:脱磷方法
dephosphorizing || 脱磷作用 | dephosphorizing process || 脱磷方法 | dephosphorylate || 脱去磷酸