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Mechanism of Filling and Feeding of Thin-Walled Structures during Gravity Casting

机译:重力铸造过程中薄壁结构的填充与进给机理

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摘要

The filling and feeding of thin-walled structures in metal castings pose significant difficulties in manufacturing aerospace structural materials. Samples containing 2 mm and 5 mm thin-walled structures were designed to study the kinetics of filling. The microstructural evolution of the solidification of thin-walled structures was studied with synchrotron X-radiation imaging. The formation of dendritic networks and the isotherm profiles of samples of different thickness were examined. The experimental results showed solidification microstructures of 2 mm and 5 mm thin-walled parts containing elongated equiaxed grains and normal equiaxed grains, respectively. The filling and feeding abilities of thin-walled parts were found to depend more on the wall thickness than on the pouring temperature.
机译:金属铸件中薄壁结构的填充和送料在制造航空航天结构材料时遇到了很大的困难。设计了包含2毫米和5毫米薄壁结构的样品,以研究填充的动力学。利用同步辐射X射线成像技术研究了薄壁结构凝固过程的微观组织演变。检查了不同厚度的样品的树枝状网络的形成和等温线轮廓。实验结果表明,分别有2mm和5mm的薄壁部件的凝固组织是细长的等轴晶和正常等轴晶。发现薄壁零件的填充和进料能力更多地取决于壁厚而不是浇注温度。

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