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首页> 外文期刊>Journal of Materials Processing Technology >Model for Predicting Radial Temperature Distribution of Semi-Solid Slug Produced by Swirled Enthalpy Equilibration Device (SEED) Process
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Model for Predicting Radial Temperature Distribution of Semi-Solid Slug Produced by Swirled Enthalpy Equilibration Device (SEED) Process

机译:用于预测旋转焓平衡装置(种子)工艺产生的半固体粘液径向温度分布的模型

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摘要

The temperature distribution of a semi-solid slug, which determines its fraction solid distribution, is a key parameter for semi-solid die casting. No literature is, however, available regarding temperature control for a semi-solid slug produced by the Swirled Enthalpy Equilibration Device (SEED) process. This work focused on revealing the relationship between the radial temperature difference in the slug and parameters of the SEED process. A model that includes seven parameters was established to illustrate the relationship by theoretical analysis. The model was verified by finite element simulation and experimental data. Results showed that the heat-transfer coefficient of the crucible-air interface and the slug radius are the key parameters for reducing the radial temperature difference of the slug. Methods for producing a large mass of slug using an alloy with a narrow freezing range (between 35%-55% solid fraction) are discussed.
机译:半固体块的温度分布,其确定其级分固体分布,是半固体压铸的关键参数。 然而,没有文献是通过旋转的焓平衡装置(种子)工艺产生的半固体块的温度控制。 这项工作侧重于揭示种子过程中径向温差与种子过程参数之间的关系。 建立包括七个参数的模型,以说明理论分析的关系。 通过有限元模拟和实验数据验证该模型。 结果表明,坩埚空气接口和镶嵌半径的传热系数是用于降低块的径向温度差的关键参数。 讨论了使用具有窄冷冻范围(35%-55%固体级分)的合金产生大量粘液的方法。

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