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首页> 外文期刊>Metallurgical and Materials Transactions B >Film Boiling and Water Film Ejection in the Secondary Cooling Zone of the Direct-Chill Casting Process
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Film Boiling and Water Film Ejection in the Secondary Cooling Zone of the Direct-Chill Casting Process

机译:直接冷浇铸过程的二次冷却区中的膜沸腾和水膜喷射

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摘要

Accurate thermal modeling of the direct-chill casting process relies nowadays on increasingly complex boundary conditions for the secondary cooling zone. A two-dimensional axisymmetric finite-element model of the direct-chill casting process was developed to quantify the importance of secondary cooling at the surface compared with internal heat conduction within the billet. Boiling water heat transfer at the surface was found to dominate and be the governing factor only when stable film boiling or water film ejection take place; all other cases were dominated by internal heat conduction. The influence of various parameters (casting speed, cooling water flow rate, and thermophysical properties of the cast material) on the occurrence of water film ejection was analyzed. An exponential relationship was found between the cooling water flow rate and the minimum casting speed at which water film ejection takes place.
机译:如今,直接冷铸工艺的精确热模型依赖于二次冷却区边界条件的日益复杂。建立了直接冷硬铸造工艺的二维轴对称有限元模型,以量化与坯内部内部热传导相比,表面二次冷却的重要性。发现只有在稳定的膜沸腾或水膜喷射发生时,沸水在表面的传热才是主要因素,并且是决定性因素。其他所有情况均以内部热传导为主。分析了各种参数(铸造速度,冷却水流速和铸造材料的热物理性能)对水膜喷射的影响。发现冷却水流量与发生水膜喷射的最小浇铸速度之间呈指数关系。

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