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A mathematical model for air-gap formation in vertical continuous casting: the effect of superheat

机译:垂直连铸气隙形成的数学模型:过热的影响

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The formation of an air gap at the mould-metal interface in continuous casting has long been known to have a detrimental effect on the efficiency of the process, and has therefore attracted many attempts at mathematical modelling. While almost all current efforts consist of complex three-dimensional numerical simulations of the phenomenon, this paper demonstrates the use of elementary asymptotic techniques to derive a quasi-analytical model that captures the essential characteristics. The model allows for full two way coupling between the thermal and mechanical problems: the formation of the air gap affects the heat transfer, whilst the heat transfer affects the stresses that lead to the formation and evolution of the air gap, In particular, this paper extends a recent model [1] by including the effects of superheat. Sample computations are performed using parameters for the continuous casting of the copper, and the results, qualitative trends and possible extensions are discussed.
机译:长期以来,众所周知,在连铸过程中在模具金属界面处形成气隙会对工艺效率产生不利影响,因此吸引了许多数学建模尝试。尽管目前几乎所有的工作都包括对该现象进行复杂的三维数值模拟,但本文证明了使用基本渐近技术来导出捕获基本特征的准分析模型。该模型允许在热问题和机械问题之间进行完全双向耦合:气隙的形成影响热传递,而热传递影响导致气隙形成和演化的应力,特别是本文通过包括过热的影响扩展了最近的模型[1]。使用用于连续铸造铜的参数进行样本计算,并讨论了结果,定性趋势和可能的扩展。

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