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Study of the Oxidation of an Al-5Mg Alloy in Various Industrial Melting Furnace Atmospheres

机译:Al-5Mg合金在不同工业熔炼炉气氛中的氧化研究

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In an industrial furnace, fired with a hydrocarbon-based fuel, the furnace atmosphere will essentially consist of a mixture of the four species: CO_2, H_2O, O_2 and N_2, all of which thermodynamically will react with aluminium. Earlier publications have addressed the question of the thermodynamic versus the kinetic driving forces for oxidation and dross formation of liquid aluminium alloys. Most of these studies have been performed in a laboratory environment with samples in the order of magnitude of 1 g or less. This paper describes a series of tests, where 10 kg samples of an Al-5Mg alloy were molten in a pilot scale furnace, using burners fired with LPG and LNG and with controlled flows of gas components to produce various mixtures of the four gaseous species. The weight gain of the samples were monitored to determine the degree of oxidation and dross formation.
机译:在使用碳氢化合物燃料燃烧的工业炉中,炉内气氛基本上由四种物质的混合物组成:CO_2、H_2O、O_2和N_2,所有这些物质在热力学上都会与铝发生反应。早期的出版物讨论了液态铝合金氧化和浮渣形成的热力学和动力学驱动力的问题。大多数研究都是在实验室环境中进行的,样本数量级为1g或更小。本文描述了一系列试验,其中10公斤的铝-5毫克合金样品在中试炉中熔化,使用燃用液化石油气和液化天然气的燃烧器,并控制气体成分的流量,以产生四种气体的各种混合物。对样品的增重进行监测,以确定氧化和浮渣形成的程度。

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