首页> 外文会议>International Symposium on Eco-Materials Processing amp; Design; 20050116-18; Jinju(KR) >Analysis of Pipe Flow during Transportation of Magnesium Alloy Melt
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Analysis of Pipe Flow during Transportation of Magnesium Alloy Melt

机译:镁合金熔体运输过程中的管道流动分析

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Magnesium alloys have been well known as active metals. Thus, magnesium alloys in molten state must be handled with extreme care during melting and casting. In this study, water model experiments and numerical analyses were carried out to optimize a pipe flow that can transport magnesium alloys in molten state safely from melting to casting furnace. Especially, during a transportation of molten magnesium alloys, a flow pattern in a pipe becomes important, because the interface between air and melt can be the source of the metal oxidation, and therefore, an air/melt interface area must be minimized. For these purposes, two vessels connected with a long pipe having two elbows with different diameters and radii of the curvature were simulated as melting and casting furnace for magnesium alloys. Optimized conditions with minimized air/melt interface area for the melt transportation were discussed in several pipe configurations.
机译:镁合金是众所周知的活性金属。因此,熔融状态的镁合金在熔化和铸造过程中必须格外小心。在这项研究中,进行了水模型实验和数值分析,以优化可以安全地将熔融状态的镁合金从熔融状态转移到铸造炉的管道流量。特别地,在熔融镁合金的运输期间,管中的流动模式变得重要,因为空气和熔体之间的界面可能是金属氧化的来源,因此必须使空气/熔体的界面面积最小化。为了这些目的,模拟了与长管相连的两个容器,该长管具有两个直径和曲率半径不同的弯头,作为镁合金的熔铸炉。在几种管道配置中讨论了以最小的空气/熔体界面面积进行熔体运输的优化条件。

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