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Mould Powder Requirements for High-Speed Casting

机译:高速铸造的模具粉末要求

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Mould powders play an important role in the stability of the continuous casting process of steel. The main functions of mould slag (i.e. molten powder) are to provide sufficient lubrication and to control the heat transfer between the developing steel shell and the mould. Sufficient lubrication requires a n undisturbed melting of mould powders and uniform infiltration of mould slag. Based on the casting practice in IJmuiden, it is found that these demands become even more important for the applied high casting speeds in thin slab casting at 5 to 6 m/min. At Corus RD&T, mould powders were characterised by X-ray diffraction and subsequent fully quantitative Rietveld analysis. Additionally, the melting of mould powders has been studied in -situ using high-temperature X-ray diffraction, to gain crucial knowledge about melting relations. Slag rims obtained from the thin slab caster mould were characterised using extended microscopic techniques in order to describe the mechanisms of rim formation and growth. Finally, slag films obtained after casting were characterised. As a result, not only the melting process of mould powder, but also the mechanism of formation and growth of slag rims is much better understood. This knowledge will be applied to define the demands on the composition and properties of mould powder for even higher casting speeds.
机译:模具粉末在钢连铸过程的稳定性中起重要作用。模具炉渣(即熔融粉末)的主要功能是提供足够的润滑,并控制显影钢壳和模具之间的传热。足够的润滑需要N不受干扰的薄膜熔化,并均匀地渗透模渣。基于IJMUIDEN的铸造实践,发现这些需求对于在5至6米/分钟的薄板铸造中的施加的高铸造速度变得更加重要。在Corus Rd&T,通过X射线衍射和随后的全定量RIETVELD分析表征霉菌粉末。另外,使用高温X射线衍射在-Situ中研究了霉菌粉末的熔化,以获得对熔化关系的关键知识。采用延长的微观技术表征从薄板脚坯模具中获得的炉渣轮辋,以描述轮辋形成和生长的机制。最后,表征后获得的炉渣薄膜。结果,不仅霉菌粉末的熔化过程,而且更好地理解了炉渣轮辋的形成和生长机制。该知识将应用于确定甚至更高铸造速度的模具粉末的组成和性能的要求。

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