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Combined Effects of Ternary Compound Binders on Magnesia Wet-gunning Mixes for Tundish

机译:三元复合粘结剂对中间包含镁湿胶混合物的综合作用

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Silicate fume (SiO2,SF),sodium tripolyphosphate (Na5P3O10,SP) and sulfamic acid (H3NSO3,SA) have been widely used as the binders of mag-nesia-based refractories.In this work,the combined effects of temary compound binders SF,SP,and SA on the water addition (WA),apparent porosity (AP) cold crushing strength (CCS),and slag resistance of magnesia wet-gunning mixes for tundish have been investigated with a simplex centroid design (SCD).Experimental results show that sample containing 2.0% of SA indicates high CCS (8.5 MPa) and low AP at ll0°C,mainly due to large amounts of brucite generated.However,low CCS at 1100°C and 1500°C is observed for the same sample,which perhaps results from the decomposition of brucite at elevated temperature.Compared with SP and SA,addition of binder SF is more effective in enhancing the middle temperature strength.Side effects will take place at all temperatures if basic SP is employed as the binder of magnesia-based refractories in combination with acidic SA,which is presumably attributed to the prior SA reactions with SP.Slag resistance test performed in a temperature gradient furnace shows that 2.0% SP Sample T1 or Sample T4 located at the center point of SCD diagram exhibits better slag resistance than 4.0% SF Sample T2 or 2.0% SA Sample T3 in terms of residual thickness of initial layers of crucibles.
机译:硅粉烟雾(SiO2,SF),三聚磷酸钠(Na5P3O10,SP)和氨基磺酸(H3NSO3,SA)被广泛用作氧化镁基耐火材料的粘合剂。 ,SP和SA在单包质心设计(SCD)上研究了中间包用氧化镁湿胶混合物的水添加量(WA),表观孔隙率(AP)冷破碎强度(CCS)和耐渣性。表明含有2.0%SA的样品表明ll0°C时CCS高(8.5 MPa)和AP较低,这主要是由于生成了大量的水镁石。然而,同一样品在1100°C和1500°C时却观察到较低的CCS与SP和SA相比,添加SF可以更有效地提高中温强度。如果使用碱性SP作为SF的粘合剂,则在所有温度下都会产生副作用。氧化镁基耐火材料与酸性SA的组合,在温度梯度炉中进行的耐渣试验表明,位于SCD图中心的2.0%SP样品T1或T4样品比4.0%SF样品T2或4.0%SF样品具有更好的耐渣性能。以坩埚初始层的剩余厚度计,SA样品T3为2.0%。

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