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首页> 外文期刊>Materials transactions >A Design Methodology for Casting Ladle to Minimize Air Entrapment and Oxide Inclusion: An Application to Permanent Mold Casting Process
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A Design Methodology for Casting Ladle to Minimize Air Entrapment and Oxide Inclusion: An Application to Permanent Mold Casting Process

机译:浇铸钢包的设计方法,以最大限度地减少空气滞留和氧化物夹杂物:应用于永久性铸造过程的应用

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摘要

In this study, we proposed a design methodology for a ladle with flow characteristics that minimize air entrapment and oxidation during the pouring of molten aluminum in the casting process, and experimentally analyzed how filling behavior affects the porosity and mechanical properties of the cast product. To confirm the validity of the proposed ladle design, we performed a numerical analysis based on the solution algorithm for transient fluid flow to investigate mold filling behavior using the proposed ladle. We fabricated a ladle based on the design, and gravity cast the test specimens. Computed tomography was used to analyze the effects of the ladle's pouring characteristics on porosity. Tensile tests were performed to evaluate the mechanical properties of cast specimens. The designed ladle reduced casting porosity and improved the mechanical properties of the cast product.
机译:在这项研究中,我们提出了一种具有流动特性的钢包的设计方法,其在铸造过程中浇注熔融铝期间的空气滞留和氧化,并通过实验分析填充行为如何影响铸造产品的孔隙率和机械性能。 为了确认提出的钢包设计的有效性,我们基于瞬态流体流动的解决方案算法进行了数值分析,从而使用提出的钢包调查模具填充行为。 我们基于设计制造了一条钢包,重力铸造了试样。 计算断层扫描用于分析钢包倾注特性对孔隙率的影响。 进行拉伸试验以评估铸造标本的机械性能。 设计的钢包减少铸造孔隙率并改善了铸造产品的力学性能。

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