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首页> 外文期刊>Research Journal of Chemical Sciences >The Effect of Spinel formation in the Ceramic Welding Fluxes on the Properties of Molten Slag
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The Effect of Spinel formation in the Ceramic Welding Fluxes on the Properties of Molten Slag

机译:陶瓷焊剂中尖晶石的形成对熔渣性能的影响

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The magnesia- and alumina-based binary and ternary mixtures of the oxides as well as quaternary oxide-fluoride mixtures, which contain MgO and Al_(2)O_(3), can form the spinel MgAl_(2)O_(4) phase at high temperature treatment.Thespinel phase formation and related issues were examined for these mixtures and commercial ceramic welding fluxes. Powder X-ray diffraction (PXRD), high temperature X-ray diffraction (HT-XRD), and gravimetry analysis were used to examine the phase composition of slags. For the major of the studied compositions, scanning electron microscopy (SEM)showsthe formation of the prismatic microcrystallites of ca. 10-35 mkm. The energy dispersive X-ray(EDX) analysisconfirmsthat pyramid-shaped prismatic crystals have MgAl spinel stoichiometry. The spinel crystallites are insoluble in the slags, according to the HT-XRD and PXRD data, and so the contribution of a part of the slag components that forming the spinel should be excluded at the estimation of characteristics of the slag melts. Based on this fact, it was proposed to quantify the spinel phase formed in the molten slag. Three convenient analytical techniques were proposed for the accurate determination of the weight and the volume fractions of the spinel phase in the slags. Two of these techniques are based on the internal standard method, which is applied in the framework of the quantitative PXRD analysis. The third technique is originated from the gravimetric analysis of the products of the solid slags etching that was conducted applying strong acids. The data obtained by the methods are sufficiently agrees with each other. The results of the spinel quantification were used to estimate the molten slag basicity and viscosity.
机译:包含MgO和Al_(2)O_(3)的氧化物的氧化镁和氧化铝基二元和三元混合物以及四元氧化物-氟化物混合物可以形成尖晶石MgAl_(2)O_(4)相研究了这些混合物和商用陶瓷焊剂的尖晶石相形成及相关问题。粉末X射线衍射(PXRD),高温X射线衍射(HT-XRD)和重量分析法检查了炉渣的相组成。对于所研究组成的主要成分,扫描电子显微镜(SEM)显示出约Ca的棱柱形微晶的形成。 10-35千米。能量色散X射线(EDX)分析证实金字塔形棱柱晶体具有MgAl尖晶石化学计量。根据HT-XRD和PXRD数据,尖晶石微晶不溶于炉渣中,因此在估算炉渣熔体特性时应排除形成尖晶石的部分炉渣成分的贡献。基于这一事实,提出了对在熔融炉渣中形成的尖晶石相进行定量的方法。为了准确测定炉渣中尖晶石相的重量和体积分数,提出了三种方便的分析技术。这些技术中的两种是基于内标方法的,该方法在定量PXRD分析的框架中应用。第三种技术源自对使用强酸进行的固体炉渣腐蚀产物的重量分析。通过这些方法获得的数据彼此充分一致。尖晶石定量的结果被用于估计熔融炉渣的碱度和粘度。

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