首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Experimental Determination of Heat Transfer Across the Metal/Mold Gap in a Direct Chill (DC) Casting Mold—Part I: Effect of Gap Size and Mold Gas Type
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Experimental Determination of Heat Transfer Across the Metal/Mold Gap in a Direct Chill (DC) Casting Mold—Part I: Effect of Gap Size and Mold Gas Type

机译:直接冷却(DC)铸模中跨金属/模具间隙传热的实验确定-第一部分:间隙尺寸和模具气体类型的影响

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摘要

An experimental apparatus to determine the heat-transfer coefficient in the gap formed between the cast metal and the mold wall of a vertical direct chill (DC) casting mold is described. The apparatus simulates the conditions existing within the confines of the DC casting mold and measures the heat flux within the gap. Measurements were made under steady-state conditions, simulating the steady-state regime of the DC casting process. A range of casting parameters that may affect the heat transfer was tested using this apparatus. In the current article, the operation of the apparatus is described along with the results for the effect of gas type within the mold, and the size of the metal-mold gap formed during casting. The results show that the gas type and the gap size significantly affect the heat transfer within a DC casting mold. The measured heat fluxes for all the conditions tested were expressed as a linear correlation between the heat-transfer coefficient and the metal-mold gap size, and the fluxes can be used to estimate the heat transfer between the metal and the mold at any gap size. These results are compared to values reported in the literature and recommendations are made for the future reporting of the metal/mold heat-transfer coefficient for DC casting. The results for the effect of the other parameters tested are described in Part II of the article.
机译:描述了一种用于确定在立式直接冷(DC)铸模的铸金属和铸模壁之间形成的间隙中的传热系数的实验装置。该设备模拟DC铸模范围内存在的条件,并测量间隙内的热通量。测量是在稳态条件下进行的,模拟了直流铸造工艺的稳态状态。使用该设备测试了可能影响传热的一系列铸造参数。在当前文章中,描述了设备的操作以及模具中气体类型影响的结果以及铸造过程中形成的金属模具间隙的大小。结果表明,气体类型和间隙尺寸显着影响DC铸模内的热传递。在所有测试条件下测得的热通量均表示为传热系数与金属模具间隙尺寸之间的线性关系,并且该通量可用于估算任何间隙尺寸下金属与模具之间的热传递。将这些结果与文献中报告的值进行比较,并提出了建议,以便将来报告DC铸造的金属/模具传热系数。本文第二部分介绍了测试的其他参数的效果结果。

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