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Industrial Direct Chill Slab Caster of Tin Bronze (C903) Using a Porous Filter in the Hot-Top

机译:锡铜绿青铜(C903)的工业直接寒冷板坯使用多孔过滤器在热顶部

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摘要

A 3D computational fluid dynamics (CFD) modeling study has been carried out for the tin bronze (C903) slab of industrial size in a vertical direct chill caster. The melt is delivered from the top across the entire cross section of the caster. An insulated hot-top is considered above the 80-mm mold to control the melt level in the mold. A porous filter is considered in the hot-top region of the mold to arrest the incoming inclusions and homogenize the flow into the mold. The melt flow through the porous filter is modeled on the basis of the Brinkmann-Forchheimer-extended non-Darcy model. Results are obtained for four casting speeds varying from 40 to 100 mm/min. The metal-mold contact region, as well as the convective heat transfer coefficient at the mold wall, is also varied. In addition to the above, the Darcy number for the porous media is also changed. All parametric studies are performed for a fixed inlet melt superheat of 62 degrees C. The results are presented pictorially in the form of temperature and velocity fields. The sump depth, mushy region thickness, solid shell thickness (ST) at the exit of the mold, and axial temperature profiles are also presented and correlated with the casting speed through regression analysis.
机译:在垂直直接冷却脚轮的工业大小的锡青铜(C903)板上进行了3D计算流体动力学(CFD)建模研究。熔体从施法者的整个横截面的顶部递送。绝缘热顶部被认为是80毫米模具以上以控制模具中的熔体水平。在模具的热顶部区域中考虑多孔过滤器以防止进入的夹杂物并使流入模具中的流动均匀化。通过多孔过滤器的熔体流动在Brindmann-Forchheimer扩展的非达西模型的基础上进行建模。获得40至100mm / min的四个铸件的结果。金属模具接触区域以及模具壁处的对流传热系数也变化。除此之外,多孔介质的达西数也发生了变化。对62℃的固定入口熔体过热进行所有参数化研究。结果以温度和速度场的形式呈现。在模具出口和轴向温度型材的贮槽深度,糊状区域厚度,固体壳厚度(ST)以及通过回归分析与铸造速度相关。

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