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首页> 外文期刊>Journal of Advanced Ceramics >Improving mold powder through crystallization using calcium fluoride and manganese oxide for continuous casting of steel
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Improving mold powder through crystallization using calcium fluoride and manganese oxide for continuous casting of steel

机译:通过使用氟化钙和氧化锰进行结晶以改善结晶器保护渣,以进行钢的连续铸造

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Mold powder is generally made of SiO2 and CaO with little amount of calcium fluoride (CaF2) and carbon. Basically, F? has a crucial effect on viscosity and crystallization of the powder. However, emission of toxic materials containing F? constituent such as HF and SiF4 leads to serious environmental pollution. Overall, six powder samples were made during this research to study the effects of such compounds as calcium fluoride (CaF2) and manganese oxide (MnO) on the crystallization of mold powder and compare with that of the original mold powder. Having considered the chemical compounds of these six samples, two were finally chosen: powder sample A and powder sample E. The former was a simulated sample of the original mold powder using CaF2, and the latter was a less-F? sample in which MnO was used as a substitution for F? in the compounds of the mold powder. In other words, the amount of F? was cut in half comparing to that of the original mold powder. The thermal gravimetric analysis (TGA) was performed on the original mold powder, the simulated sample of the original mold powder and the less-F? sample. The results of the TGA demonstrated the reduction of thermal loss in samples A and E comparing to the original mold powder. On the other hand, the results of differential thermal analysis (DTA) of these three samples, i.e., original mold powder and samples A and E, demonstrated that melting and crystallization temperatures of the original mold powder were similar to those of samples A and E. Therefore, it can be concluded that samples A and E are potential laboratory-scale substitutions for the original mold powder.
机译:防霉粉通常由SiO2和CaO以及少量的氟化钙(CaF2)和碳制成。基本上是F?对粉末的粘度和结晶具有至关重要的作用。但是,释放出含有F 2的有毒物质。 HF和SiF4等成分会严重污染环境。总体上,在此研究过程中制作了六个粉末样品,以研究诸如氟化钙(CaF2)和氧化锰(MnO)之类的化合物对结晶器保护渣结晶的影响,并与原始结晶器保护渣进行比较。考虑了这六个样品的化合物后,最终选择了两个样品:粉末样品A和粉末样品E。前者是使用CaF2模拟的原始防霉粉的模拟样品,而后者则是F含量较低的粉末。 MnO代替F2的样品在防霉粉的化合物中。换句话说,F的量是多少?与原始防霉粉相比被切成两半。对原始防霉粉,原始防霉粉的模拟样品和less-F?进行热重分析(TGA)。样品。 TGA的结果表明,与原始防霉粉相比,样品A和E中的热损失减少了。另一方面,这三个样品,即原始防霉粉以及样品A和E的差热分析(​​DTA)结果表明,原始防霉粉的熔融和结晶温度与样品A和E的相似。因此,可以得出结论,样品A和E是潜在的实验室规模替代原始防霉粉的方法。

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