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首页> 外文期刊>CERAMICS INTERNATIONAL >Refractory filler sands with core-shell composite structure for the taphole nozzle in slide-gate system of steel ladles
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Refractory filler sands with core-shell composite structure for the taphole nozzle in slide-gate system of steel ladles

机译:钢包滑门系统出铁口用核壳复合耐火填料砂

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Refractory sand used for filling the taphole nozzle in slide-gate system of steel ladle needs to form a suitable sintered crust to prevent molten metal from direct contact with the gate system which, when opened, permits flow of metal from the ladle through the taphole well. Conventional filler sand consists of powdered mixtures of at least two compositions with suitable particle size and mass ratio. We herein propose a novel core-shell-structured composite particle as the refractory sand. Silicon carbide (SiC) particles with an average diameter of 50 μm were oxidized in air at 1100-1600 °C to form SiC@SiO_2 core-shell structure. As the oxidation temperature increases, silica weight-ratio increases from 0.8 to 7.9 wt.%, equivalent to a calculated shell thickness of 20-157 nm, respectively. The crust thickness can be tailored by adjusting the shell thickness. X-ray photoelectron spectroscopy, X-ray diffractometry, and scanning electron microscopy were used to characterize the core-shell structure.
机译:钢包滑门系统中用于填充出铁口喷嘴的耐火砂需要形成合适的烧结结皮,以防止熔融金属直接与浇口系统接触,当打开时,允许金属从钢包流过出铁口井。常规的填充砂由具有合适的粒度和质量比的至少两种成分的粉末混合物组成。我们在此提出一种新型的核壳结构复合颗粒作为耐火砂。平均直径为50μm的碳化硅(SiC)颗粒在1100-1600°C的空气中被氧化,形成SiC @ SiO_2核-壳结构。随着氧化温度的升高,二氧化硅的重量比从0.8增至7.9重量%,分别相当于计算出的20-157 nm的壳厚度。可以通过调节外壳厚度来调整外壳厚度。 X射线光电子能谱,X射线衍射和扫描电子显微镜被用来表征核壳结构。

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