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Experimental and Theoretical Study on Melting Kinetics of Spherical Aluminum Particles in Liquid Aluminum

机译:液铝中球形铝颗粒熔化动力学的实验与理论研究

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摘要

In this study a process analysis of the melting process of solid particles in a bath of same composition is performed using both experimental information and theoretical computations. An experimental setup was used to measure the thermal histories and to follow the evolution with time of the size of solid metallic spherical particles being melted in a metallic bath of same composition. For such a purpose, pure aluminum was used during the experiments for both solid particles and liquid bath. A mathematical model was also developed based on first principles of heat transfer to simulate the melting kinetics of a cold metallic spherical particle immersed in a hot liquid bath of same composition. The mathematical model was reasonably validated when compared against the experimental results obtained in this work. A process analysis of the melting process was performed to determine the effect of the initial temperature and size of the solid particle, the bath temperature and the convective heat transfer coefficient on the melting time and on the energy consumption. The analysis showed that the variable presenting the most significant effect on both the melting time and the energy consumption is the convective heat transfer coefficient between the particle and the bath, since an increment in such a parameter accelerates the melting process and saves energy. Therefore, proper stirring of the bath is highly recommended to enhance the melting of metallic alloying additions in the metallic baths.
机译:在该研究中,使用实验信息和理论计算进行相同组合物浴中固体颗粒的熔化过程的过程分析。使用实验设置来测量热历史,并随着时间的尺寸的时间延续在相同组成的金属浴中熔化的固体金属球形颗粒的时间。为此目的,在实验期间使用纯铝,用于固体颗粒和液体浴。还基于传热的第一个原理开发了数学模型,以模拟浸入相同组成的热液体浴中的冷金属球形颗粒的熔融动力学。与在这项工作中获得的实验结果进行比较时,数学模型是合理验证的。进行熔融过程的过程分析以确定固体颗粒,浴温和对流传热系数对熔化时间和能量消耗的初始温度和尺寸的影响。分析表明,呈现对熔化时间和能量消耗的最显着影响的变量是颗粒和浴之间的对流传热系数,因为这种参数中的增量加速了熔化过程并节省了能量。因此,强烈建议对浴的适当搅拌以增强金属浴中金属合金化添加的熔化。

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