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SiO2-Al2O3-CaO-MgO四元礦渣棉體系的表面張力測定與模型預報

Surface tension investigation and model forecasting of SiO2-Al2O3-CaO-MgO quaternary mineral wool slag

  • 摘要: 表面張力是礦物棉生產的重要參數,直接影響到配料和工藝參數的選擇.通過實驗測量并建立模型預報系統研究了以高爐渣為主要原料制備礦物棉時熔體的表面張力.首先測量了SiO2(40%-60%)-Al2O3(5%-20%)-CaO(20%-30%)-MgO(5%)四元系的表面張力,其值處于350-500 m·m-1之間;然后結合文獻報道的表面張力數據,利用人工神經網絡技術建立了SiO2(35%-60%)-Al2O3(5%-20%)-CaO(20%-45%)-MgO(0-10%)四元渣系的表面張力預報模型.該模型對成分范圍內的表面張力預報平均誤差為9.32%,預報精度較高,可以預報礦物棉熔體成分范圍內的表面張力.

     

    Abstract: Surface tension is one of the major parameters for mineral wool production, and it may influence burdening and processing parameter selection. The surface tension of melts for mineral wool production using blast furnace slag as a major material was systematically investigated by experiment measurements and model forecasting. Firstly, a series of surface tension values of SiO2 (40%-60%)-Al2O3 (5%-20%)-CaO(20%-30%)-MgO(5%) quaternary systems were measured, and they showed in the range of 350 to 500 m·m-1. Then in combination with data from reports in literature, an artificial neural network (ANN) model was constructed to calculate the surface tension of melts in an extension system of SiO2 (35%-60%)-Al2O3 (5%-20%)-CaO(20%-45%)-MgO(0-10%). The average error of the developed model is 9.32%, proving a higher accuracy for predicting the surface tension of those melts in the extension system.

     

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