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首页> 外文期刊>Experimental Heat Transfer >EXPERIMENTAL STUDY ON THE EFFECT OF LIQUID METAL SUPERHEAT AND CASTING HEIGHT ON INTERFACIAL HEAT TRANSFER COEFFICIENT
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EXPERIMENTAL STUDY ON THE EFFECT OF LIQUID METAL SUPERHEAT AND CASTING HEIGHT ON INTERFACIAL HEAT TRANSFER COEFFICIENT

机译:液态金属过热度和铸造高度对界面传热系数影响的实验研究

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摘要

In this article, the interfacial heat transfer coefficient (IHTC) is investigated as a function of superheat temperatures (100℃, 150℃, and 200℃) and casting heights (100,150, and 200 mm). The experiments were conducted for a liquid alloy (Al-Si 12.9%) on water-cooled copper chill during vertically upward solidification of a eutectic Al-Si alloy casting. A finite difference method (FDM) is applied for the numerical used for solution of inverse heat conduction problem (IHCP), the so-called Beck's method. Computer-guided thermocouples were connected with the chill and casting, at six positions and the time-temperature data were recorded automatically. As the lateral surfaces are very well heat isolated, the unidirectional solidification process started vertically upward at the interface surface. The measured time-temperature data files were used by FDM using explicit technique. The experimental and calculated temperatures have shown excellent agreement The IHTC increases as superheat temperatures increases. However, the casting height (100,150, and 200 mm) has no significant effect on the IHTC. It changed only maximum peak values of the IHTC and increased air gap formation time with increasing casting height.
机译:在本文中,研究了界面传热系数(IHTC)与过热温度(100℃,150℃和200℃)和铸件高度(100,150和200 mm)的关系。在共晶Al-Si合金铸件的垂直向上凝固过程中,在水冷铜冷却液中对液态合金(Al-Si 12.9%)进行了实验。有限差分法(FDM)用于求解逆导热问题(IHCP)的数值,即所谓的贝克法。计算机引导的热电偶与冷铸件连接,在六个位置,并自动记录时间-温度数据。由于侧面的隔热效果非常好,因此单向凝固过程在界面处垂直向上开始。 FDM使用显式技术使用测得的时间-温度数据文件。实验和计算温度显示出极好的一致性。随着过热温度的升高,IHTC升高。但是,铸造高度(100,150和200毫米)对IHTC没有明显影响。随着铸造高度的增加,它仅改变了IHTC的最大峰值,并增加了气隙形成时间。

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